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KAERI/TR-2141/2002 Construction of The Two-Phase Critical Flow Test Facility KAERI 2002. 3. % ^ 4S 4 ^ y ^ ^ Korea Atomic Energy Research Institute

Construction of The Two-Phase Critical Flow Test Facility

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Page 1: Construction of The Two-Phase Critical Flow Test Facility

KAERI/TR-2141/2002

Construction of The Two-Phase Critical Flow Test Facility

KAERI2002. 3.

% ^ 4S 4 ^ y ^ ^

Korea Atomic Energy Research Institute

Page 2: Construction of The Two-Phase Critical Flow Test Facility

4 4 43%4# 2001 4^ 4^444& 444)4 4#7H4 #44 "44#4

^ 444# 44444444 4# 43%4"& 4##44.

2002. 3.

4 4: 44#, 444, 44444^, 44# (##444444) 444 (MMIS4)44^. (^#4444)

Page 3: Construction of The Two-Phase Critical Flow Test Facility

o

SMART #%}g-4 ##^44 ##4z44 44##4 444# ### S#

# 4 4# 4###4# 4###4^]#4 4444# #%M4##4 4444^

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44# 4&44 44444 #s# 44 444 44 44 20 mm, 44 4444

12 MPa, 44^ 0 - 60 o C 4 4444^ ^4 #4 0.5 kg/s & 4^ ### 4

4 4 ##444 4#4 444 444 4^- 44# 444# 4444# 444

44. 44444 4^# ^.4 a.#a.#4 4444 #4 4# 44#44 44 4

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444.

Page 4: Construction of The Two-Phase Critical Flow Test Facility

Summary

The two-phase critical test loop facility has been constructed in the KAERI

engineering laboratory for the simulation of small break loss of coolant accident

entrained with non-condensible gas of SMART. The test facility can operate at

12 MPa of pressure and 0 to 60 0 C of sub-cooling with 0.5 kg/s of non­

condensible gas injection into break flow, and simulate up to 20 mm of pipe

break. Major components of the test facility were arranged such that the

pressure vessel containing coolant, a test section simulating pipe break and a

suppression tank were installed vertically with inter-connected pipings. As quick

opening valve opens, high pres sure/temperature coolant flows through the test

section forming critical two-phase flow into the suppression tank. The pressure

vessel was connected to two high pressure N2 gas tanks through a control

valve to control pressure in the pressure vessel. Another N2 gas tank was also

connected to the test section for the non-condensible gas injection. The test

facility operation was performed on computers supported with PLC systems

installed in the control room, and test data such as temperature, break flow rate,

pressure drop across test section, gas injection flow rate were all together

gathered in the data acquisition system for further data analysis. This test

facility was classified as a safety related high pressure gas facility in law. Thus

the test facility design documentation was reviewed, and the test facility was

also inspected during it's construction by the regulatory body. The regulatory

body issued permission for the operation of the test facility after final

construction inspection.

n

Page 5: Construction of The Two-Phase Critical Flow Test Facility

4 4

-9-4 i

Summary.....................................................................................................................................ii

a 4# xiii

si 4 4# ix

414 44444 4-8-....................................................................................................1

414 444 44 ......................................................................................................1

424 444 4^ ..................................................................................................... 2

434 m4 ......................................................................................................... 4

424 44 4#...............................................................................................................5

414 4-8-.................................................................................................................. 5

424 44# 4#..................................................................................................... 6

1. Systems] 44 ...........................................................................................................6

2. Pressure Vessel (PV-110)...........................................................................................6

3. Ham Heater (HT-110/120/130)................................................................................... 7

4. Circulation Pump (CP-110) ......................................................................................... 8

5. Cooler (HX-110)........................................................................................................... 9

6. Mixing Tank (MK-110).............................................................................................10

434 4^7}^ 11

1. System^! SL4 ......................................................................................................... 11

2. Pressure Control Valve System (PCV-201) ............................................................ 11

3. N2 Gas Flow Control Valve System (FCV-201)................................................... 12

4. N2 Gas Flowmeter (FT-202).................................................................................... 13

5. N2 Gas Heater (HE-210/220)....................................................................................13

6. N2 Gas Injection Line Heater (HE-230)..................................................................14

444 ^44 4#44............................................................................................ 15

1. Systems] SL4 ......................................................................................................... 15

2. Coolant Flowmeter (FT-301) .................................................................................... 15

3. Gas/Coolant Mixer......................................................................................................16

4. Test Section................................................................................................................ 16

in

Page 6: Construction of The Two-Phase Critical Flow Test Facility

5. Quick Opening Valve (QOV-301).............................................................................17

6. Suppression Tank (ST-310) ......................................................................................18

45# inyj-Ai #44#.................................................................................................... 19

1. System# ## ......................................................................................................... 19

2. N2 Gas Supply Tank (GT-210/220)........................................................................ 19

3. N2 Gas Injection Tank (GT-230)............................................................................ 20

4. Gas Booster (GB-210)............................................................................................... 21

5. Air Compressor (AC-210)......................................................................................... 22

43# ##4 #4 4#.................................................................................. 45

41# 4-8-...........................................................................................................................45

42# #4 ^ 4#...........................................................................................................45

43# ##4 #4 .............................................................................................................46

44# S# # 44 47

41# 4-8-...........................................................................................................................47

45# 44 ^ 444#.........................................................................................................48

41# 447] # 1M........................................................................................................48

1. 444.........................................................................................................................49

4. #4 444..................................................................................49

4. 4# 444........................................................................................................ 49

4. 4# 444..................................................................................50

4. 4^ 444........................................................................................................ 51

2. 44 in...................................................................................................................51

7>. 4# 4 4 in n44 (PCV-201)................................................................................51

4-. #444 in (pcv-ioi)............................................................................. 53

4. #n/M: m44 (FCV-201).......................................... 54

4. On/Off in...................................................................................................... 56

4. Quick Opening Valve (QOV-301)...............................................................56

3. Safety Valve............................................................................................................ 56

42# 444#..........................................................................................62

- iv -

Page 7: Construction of The Two-Phase Critical Flow Test Facility

1. 44#.........................................................................................................................62

y}. Overview #4 ........................................................................................................... 62

4. 444 444 ................................................................................................... 64

4. 444 4^3...............................................................................652. PLC 4444 ...........................................................................................................66

7}. PLC 4^44 #4......................................................................................... 66

4. CPU 2.#..................................................................................................69

4. 44^71 4^ 2.4......................................................................................... 69

4. 44&zi #4 it......................................................................................... 70

4. 444 4/# 4 s#................................................................................ 70

3. 442.4 71

44-0-7] 4 44#4................................................................ 71

4. 7}# ^4.................................................................................................. 72

4. 44 44........................................................................................................... 73

4. 44/444 4444......................................................................................74

4. 444 4444 44.........................................................................747h MMI #4 ................................................................................. 74

4. 444 44....................................................................................................... 75

4134 DAS 44 ................................................................................................................78

1. DAS 44 44 ........................................................................................................78

2. DAS 444- 80

7}. DAS 444 44 44.......................................................................................................80

4. 4444...............................................................................................................81

4. Trend #444 ..................................................................................................82

464 44 4#............................................................................................. 84

4114 44 4 44....................................................................................841. 44 44-................................................................................................................. 84

2. 44.............................................................................................................................85

3. 44 44.........................................................................................86424 44# 4 m44...................................................................................................87

1. 44#.........................................................................................................................87

V -

Page 8: Construction of The Two-Phase Critical Flow Test Facility

2. msiM 87

4174 444 4^7% ..................................................................................................................... 91

4U4 44 91

7%24 44 44 .................................................................................................................91

1. 4444........................................................................................................................... 93

7}. #4# 4^7iM 444^1............................................................................. 93

4. 4444^1 417] .............................................................................................. 94

4. 4444^1 4^1....................................................................................................94

4. 4444^1 44................................................................................................... 95

4. 44444 4444........................................................................................... 95

4. 44444 ^4.............................................................................................. 95

4. 44444 44................................................................................................... 98

2. 43% 44......................................................................................................................... 98

7}. 44 4 4#7]4 43%?I14................................................................................98

4. 4444^7% 4 4^1 4^1................................................................................100

3. 444 4#44 4^44 44.............................................................................103

7}. 444 4 #4................................................................................................. 103

4. z44 4444...................................................................................................103

4. Scintillation Preamplifier................................................................................... 104

4. Amplifier and Single-Channel Analyzer.............................................................104

4. Timer and Counter............................................................................................104

4. MCA Analyzer.........................................................................................................104

4. Minibin and Power Supply................................................................................... 104

4. Counters] Ml 4 .........................................................................................................104

4. 4444^7114 4444.....................................................................................105

434 444 4^7114 314..............................................................................................105

1. 444 4 #4 4 4^44........................................................................................105

2. 444 4 #4 4 31444................................................................. 1074144 444 4^44 444..........................................................................................108

4184 44444 447}...........................................................................................................110

- vi -

Page 9: Construction of The Two-Phase Critical Flow Test Facility

4W 4-0-...........................................................................................................no

424 447} 44 44 ^ 4#.................................................................................no

434 447} #4 ...........................................................................................................Ill

494 #Zg-4.......................................................................................................................112

4# 1-1 N2 Gas Flowmeter (FT-202) a4x}&........................................................ 114

4# 1-2 Coolant Flowmeter (FT-301) -HTj x}jg_........................................................117

4# n-1 44 4444 A}^ ............................................................................................H8

4# 0-2 44 4444 A}^ ........................................................................ 1204# n-3 44 4444 A}^: ........................................................................ 122

4# n-4 4^ 4444 A}%........................................................................ 125

- vii -

Page 10: Construction of The Two-Phase Critical Flow Test Facility

20

& 4:4

# 2.1 434 #4 4^## 4^7}a4 34..................

a 2.2 4^7j-a##3a 3 Gas Injection 3^4 7]# xj-g.

It 2.3 4y-^a 5 Gas Injection 4a4 44...................

It 2.4 4^h Gas BoosterSj #_£L7l 7] a}-4..............................................

a 5.1 34 4444 44 444 44 44..................................

a 5.2 4344 443 34444....................................................

a 5.3 #3 4444 #4 444 #4 #4 ...................................

a 5.4 43 4444 44 444 44 44...................................

a 5.5 4^ 4444 44 444 44 44...................................

a 5.6 4444 443 4^444....................................................

a 5.7 43^34 4# 444444 44 34............................

a 5.8 FCV-201 4444 444 FT-202 44= 44M4 4:4

a 5.9 On/Off #H4 4444, ^43, 4^4 3 s#..........

a 5.10 444 34#n 44 3 #4 44......................................

a 5.11 PLC 4 #4 s#4 44...........................................................

a 7.0 44344 44# 3444 4434.........................................

a 7.0 34434 43 43344 44..........................................

3 7.3 4&# &4 #4434 phantom4 44............................

21

21

22

57

57

58

58

58

59

59

60

61

61

68

94

95

107

Page 11: Construction of The Two-Phase Critical Flow Test Facility

44

71^ 2.1 MM 7l]^ .......................................23

M 2.2 H]-§-47^ oj^M MM P&ID .........................................24

Ti^l 2.3 Pressure Vessel PV-110 ASS'Y .................................................................... 25

71 ^3 2.4 Pressure Vessel PV-110 Head & nozzle Detail ......................................... 26

TZ.*g 2.5 Electric Heater HE-110/120/130 ASS'Y .....................................................27

71^3 2.6 Non-Seal Canned Pump CP-110 ..................................................................28

71^ 2.7 Line Cooler HX-110 ASS'Y ..........................................................................29

71^ 2.8 Mixing Tank MK-110 ASS'Y ......................................................................30

71^3 2.9 Pressure Control Valve PCV-201 ASS'Y ....................................................31

71 ^3 2.10 Pressure Control Valve Installation .............................................................32

71^ 2.11 N2 Gas Heater Vessel HE-210/220 ASS'Y ............................................... 33

71^3 2.12 N2 Gas Head & Injection Section ............................................................. 34

71^3 2.13 Test Section (4*20 mm, L=300 mm) .......................................................... 35

71^3 2.14 Test Section (4*10.9 mm, L=1000 mm) ..................................................... 36

71^3 2.15 /] Test Section (4*10.9 mm, L=1000 mm) ............................... 37

71^3 2.16 Quick Opening Valve QOV-301 ASS'Y ....................................................38

71^3 2.17 Suppression Tank ST-310 ASS'Y ............................................................. 39

71^3 2.18 Sparger in Suppression Tank ....................................................................... 40

71^ 2.19 WMTll# 71]^ ........................................................................................ 41

M 2.20 ^a(GT-210/220)^3 7lj^ ..........................................................42

71^ 2.21 Gas Injection Tank(GT-230M 7lj^.........................................................43

71^ 2.22 Gas Booster (GB-210)^| ............................................................ 44

71^ 5.1 ^ .....................................................................................52

M 5.2 FCV-201 ^^1 ^ MW ................................................................................ 56

71^3 5.3 Overview sj-Vl ....................................................................................................... 63

71^ 5.4 ^ .....................................................................64

7i^ 5.5 65

- ix -

Page 12: Construction of The Two-Phase Critical Flow Test Facility

3^ 5.6 PLC 44^4(444 4-r4 D Panel)..........................................................67

3^ 5.7 444 PLC4 44^..........................................................................................68

3^ 5.8 f 44 44 #444......................................................................................... 77

3 4 5.9 444 Trend 44 ....................................................................................................................77

3 4 5.10 DAS 444 4 #44 .........................................................................................81

3 4 5.11 DAS 4444..............................................................................................................................82

3 4 5.12 DAS Trend #4##..............................................................................................................83

3^ 6.1 ## 44 4 44 #4^.................................................................................. 84

3^ 6.2 44 4 43 44 7%^...................................................................................85

3^ 6.3 44414 ^4 4 f4 ....................................................................................... 86

3^ 6.4 44# ^ 34^4 44....................................................................................88

3 4 6.5 1# 4 2#4 Me]] 4 4#4 ...............................................................................................89

3 4 6.6 3#, 4#, 5# 4 me]] 4 4#4 ..........................................................................................90

34 7.1 444444444 4-8-4 4&# #4-8- 444 4m4........................92

3 4 7.2 444 4^44 7#m.......................................................................................... 93

3^ 7.3 44444 444 4444 44444 44 7i]#m.................................. %

3^ 7.4 44444 444 4444 44444 24 44m.................................. 97

3.4 7.5 444 4^44 44mm ^4m................................................................... 97

34 7.6 4#4 4^1#4 4#44 444 MCNP 444 44 Nodalizadon....99

34 o.7 44444 4^..............................................................................................101

34 7.8 444 4#44 44 44] 44....................................................................102

34 7.9 MCA# 444 4^44 44........................................................................ 106

34 7.10 444 44 #4 #4 444 4# 43444 4444..........................106

34 7.11 4&# 44-8- 4444 44^...................................................................... 109

X

Page 13: Construction of The Two-Phase Critical Flow Test Facility

*i| 1 ^ I 7HS

4]l^ 4^^

444714^### 3M ^44 #4" 4444 4## 4" $1# #^^4

44M -%4&4l SMART# 7%#%n. #4. SMART# %!## 7l###^ M&

4# 44 444#$1 #4# 444# xl?#!### #7]#^7] ^ 4^4x117} -%x}g. -§-71 44 #444 #4. Kj-Sl-Al #xl& ##4## 4-8- 44# A}o]

4 444# 44 444 ^1 >1 =1 O.^A-1 tflt§ ^ZT-xllA>^A>J7^ ^4#

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414. xl47l#44 #4##4# 7}# ##4& 4#4 44 20 mm4 ^4

<4 434 4###4# 44 20 mm4 ##4# ^44 4444 414. 7}717141-

7M 4## 44:4 44:4# 7I-4-44I ##Al3 44# X147I4-4 #

4##4 $1# 4-0-44 ## 7l#7l #/#4 #-#414- 444 444 44# #4 7-1 4171144# 44447-1 4#g. 4#44, 44 4^4#7il #-#7134 713 4

44 #44 444 44# 4# # 414. 447-1 4### 7l#7l exil# 4#4

4### 44### 4444 4#4# 44 SMART#xig_4 44zH #-#

7I3.4 4444 44714 4# #-8-4 4471 44. 3el35. #xi#4 4-xi] #4

4 47171 SMART ^4471] 4^7124 44% 444 444 3# 3.447I

#^4# 4##7l# 44## 47ll#444# #4 &# 7114-4 4-8-44 ^#4

$14.4%144## 4#4 #444471# SMART 44^.4 ^4 4#xH #-#713

44444 4-8-4 4###7l#7l &## 44## 44## ##7i&# 4444 444 #7ig. #^4-71] 4#7i344 44##4 #444 #4# 34# # 4

# #444# 44 44 4444 4 $14.

“ 1 “

Page 14: Construction of The Two-Phase Critical Flow Test Facility

4] 2^

# 4 44 (4 4^4 43 4 4## 4 31 -fr 4# 4 44: Non-condensible gas

two-phase critical flow test facility) # # 4444444344 #31# 4^4

3 SMART #%l-344 7f4 #3# 3^ ^#711 4# #3## ##4#4

#44 ##### if# 4# 4# ##33 4#4.

#31#4 ##44 #314 444 # ##4444 ig### ##4&# 444

31 4# #4 4 #^1# -8-4 444 4]4 if3# 3# 44 #44

44 ifs/f ###43#, #4 -8-4 4444 444 44-8-444 #3 444

444 44.

44 44 3.7]: 44 4 # 20 mm

#31 44: ^rj] 12 MPa

44 4#3: 0 - 60 C

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#4444 a/14 -§-4 #44 ^44 #4^4# 4444 if 33 ###%#-.

44 #43444 -8-444 4# ##7114 ## 44# ##44 444 3##4

4444 ## 444 444# 4444 &#4 44444. 4, 44 444 44

4 44 20 mrn 43, 44 12 MPa 4 443 60 C 4 #44444 431444

44444 44 30 #3 7f#4# 44444 444 #31#M. 444 444

4# 4#3l#4 1300 literg. 44434, 44444 44# 4-43 4 #4443

3 31444 4444 4444 314 #44 431444 ### 4 43# 444.

3444"3) 444344 44 44 44# 344# Test section# 44444

44 #444 4-444 44 4433 4444, 44 44# #44 #344 4

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- 2 -

Page 15: Construction of The Two-Phase Critical Flow Test Facility

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4 44 4^4 444 4-4 #71 45 #44# #54 44 444554 44#

444 444 4 45# 444. ##47} 44 44-0-4# ##4455 444

4 4444 444 3,600 liter 454 5445 44# 4445 44# #44 4

4-0-44 44444. 54 44144 #44 #5# ##4 444 #444 44

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41444 444 #5 7}## 447}#4# ^4 ^44 #4444.

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- 3 -

Page 16: Construction of The Two-Phase Critical Flow Test Facility

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- 4 -

Page 17: Construction of The Two-Phase Critical Flow Test Facility

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(##4^)4# 150 °C, 5 bar4 44444# 4#4M. 44444 444 44

4 47} 444 # #44444 4 component^ 44444# #44 ## 4 4

^444 4^4%4. 4444# 444 4##/} ###2- 4^#^2_4 444

#4 44# P&ID ^4(zz_4 2.1, 2.2 #^)2.2., 44#44 44# 4 component

^42.2. 4444 QA44# 44 444^4. 44^4# #42. 4 44#44

444 444%-#4 44 # #2. #444 4#4## 44 #4, 44, 444

4 ##44-4 4^4%4. 444 4444## 4444 #4 ##4%#4 44

- 5 -

Page 18: Construction of The Two-Phase Critical Flow Test Facility

44 4 7MM]#°i ^444 44# 44#^#4 4#4 #4 4^4%4. 44

4# 4 41 #4 71 4]44 component #5 -§-44 444 4°] 4#4 %4.

44/444 4 41#4 44444 44 444 444 444 4 444 4#

4^4.

4]2^ 41

1. System4 44

### 41#4 #4# 4444 44 444# 44^44 #^, #4#& 4

f7l 4 4 4—5- 4444, Main Heater, 444 —, Cooler 55] 2. Mixing Tank5.

4444. 4444 44### #44 4#7l-5:# 4444 4 #4 444z 4

55 #44444 Main Heater4 Cooler# 44, 444 -444—5-4 5.45.4

4^H4 #^^44 #4, 444444. ### 444 ## 44144 441 4 414

444 444 44.

2. Pressure Vessel (PV-110)

4. ## 4 4^1

Pressure Vessel! #4 #4 )# 44 444 44 44 4441# 44#4

4 #^ 4 44 #5. 44/444 4444 ^44# 4445 44 4 4444#

44444 4444 444 444 4M4# #44 ^44# 4#4# 44

component0!4. 4444V 4444]#, 44444# 4 4444#4#4 44

4444 ^444 4V4V71- #444 4#4 ^444 4V4V4 drain 4

vent# 44 4144 ### #4/1- 4444 44. 44#4 44 44# 444

4444. s4 #444 4# 44#4 4 ##71-5:71- 54#5. #44 44#4

#4#44, 444 spool piece, 44 tap ## 444 4 4v# 5## #4, 4

4 44 ###55.4 #44 ###5. 4# #4 #4 4-4 44 4 ^4^ 4 4

5:71-5: #4 #4 #4## 44 444 baffle# #4# 444. 44#44 44

4 5### 4444 444- 4#4 444 44# 5.4 2.3, 2.44 444 44.

- 447H4#4# 44: PV-110 44, 4 ", N2 (flange)

- 6 -

Page 19: Construction of The Two-Phase Critical Flow Test Facility

- m##4# 332# : PV-110 1-1/2 ",Sl(3,3ea), S2(#) (Fange)

- 327}2^-#4# 332# : PV-110 34, 2", N1 (Fange)

- T/C spool piece 432# : PV-110 34, 3 ", G1 (flange)

- Level Transmeter 432# : PV-110 34, 1-1/2", G2 (flange)

- Safety Valve 432# : PV-110 34, 3/4", VI (boss)

- P, T tap 432# : PV-110 #4, 1/2", G3-G7 (boss)

4. 44 4 34

Pressure Vessel!/- 2.42.43 3 44 3 4 34-4—2 3 443 4 42

2 437}244#43 44 44 34/43344. 42444 ASME 224 Sec.

vm Div. 2 33# 444. 42444 4# 443 m# 44 4 4# 44 44

4 443 44.

- 4424 : 43 172 bar, 42 353 °C

- 4444 : #, N2 42

- 44 : #4, 4443 -+ A240-Ty304 (STS304)

4443, 2# -+ A182-F304 (STSF304)

- 44 (shell) 44 : 58.1 mm

- 444 3(top head) 44 : 180 mm

- 3334 43(head) 44 : 60 mm

- 4 4 : 3 4 600 mm, 4 °] 4975 mm

- 44 : 4434(316 bar), 33344(RT/MT), 332/432 #4

3. Main Heater (HT-110/120/130)

42 ^ 44

Main Heater# 4344(PV-110) 43 ^34# 44233 #22 7}

#44 33 4434^. 3#343 ## 643 444 120 bar 323 °C3 2322

7}#444 34. Heater3 #3# 3344 344 4344 34 #444 43

3443 #4, 434 loop #433 3#3# 23334. 24 3443 #4#

4# 234 43 33# 33334. Heater3 44# #344# #444 42

333# #44 344 34 heater# 4 #2 43334. Heater3 m2 44# 4

#3 424 444 4## 23 2.54 4 44 44.

- 7 -

Page 20: Construction of The Two-Phase Critical Flow Test Facility

- 444P4 #42# : Heater Vessel #4, 1-1/2", N1~N6 (flange)

- Drain : Heater Vessel 44, 1/2 ", N7 (flange)

4. 44 4 44Heater Vessel V| #5171144- AS ME 2Mp Sec. VIII Div. 1 & Sec. II

Part D ^4# 444. #^P4P 4# 444 4# 44 4 4# 44 444 4

44 44.

- %i]44 : 444#

- 4P^4 : #P 172 bar, 4^ 353 °C

- 4444 : 4

- Heater ##p : 150 kW (50 kW x 3 ea)

- Heater Rod : <pl8xl500L mm

- Heater Vessel : 8 " SCH. 160S, 1674 mm,

12 Heater Rods included (50 KW for each vessel)

- Round Cap : 8 " SCH. 160

- 4 # : SheU, Nozzle A312-TP304

Cap A240-TY304

Flange —*■ A182-F304

- 44 : 444^(267 bar), P4P44(RT)

4. Circulation Pump (CP-110)

4. P 4p

Circulation Pump# P4P 4#A1 4444 * * 71 PI 44 Main Heater# 4

P 7}#p^# 444 pp ##47] P 444P 44# 44

P4# 44. Pumpp 444 heaterp 444 4P4P P 4^44 44 Zp4P

5 m'/hrg. 4#4#4. P4 4P4P P WW 1544 IP 444# 44PP

444 44 size# 1-1/2 "4 44P44. Pumpp 444 444 4# pp##p

4444 4 heaterp 4444# nlppp 25 m# 444914. Pumpp type# 2

42.4 #4# 2pp-p 7] 4 aj o] #4#2 2#p 4 4 non-seal canned type#

- 8 -

Page 21: Construction of The Two-Phase Critical Flow Test Facility

4^444. 2.6 4^)

- 4443]# # : Impeller #, #4, 1-1/2", Nl, N2 (flange)

- Cooling Line : Casing #4, 1/2", N3, N4 (flange)

4. 314 4 44

44444 44^43] 44 ^^4 43] 4 ^^314431(44)

44 4^444. 444 #_& 44 4 4# 44 444 444 44.

- 444 : 44

- 43]^4 : 44 172 bar, 4^ 325 °C

- 4444 : 4

- Pump Type : Non-seal Canned

- Flow Rate : 5 nf/hr

- Head : 25 m,

- Power : 440 V, 3 <p, 60 Hz

- Material : Casing, Shaft, Impeller STS304

- 44 : 4444(258 bar), 44444, ^#^A}

5. Cooler (HX-110)

4. 4^ 4 43]

Cooler# 4^4/14 ^4A]]7]- 7]-#A] #4^# 4

4 ^44 444 4^# ^44 44 ^4444 20 CAirg. ^4#4.

Cooler^] type4 shell & tube type0] 3. 44s] 45, 4 44 s] 44# 447] 44

4 #44 444 43]4#4. (zz.4 2.7 4^)

- #^43]# 44^# : Tube side 4, #4, 1-1/2", Tl, T2 (flange)

- Cooling Line 44°c# : Shell side 4, #4, 1", SI, S2 (flange)

4. 314 4 444^3144 ASME a^4 Sec. VIE Div. 1 ^4# 444. 4^3] 43]

- 9 -

Page 22: Construction of The Two-Phase Critical Flow Test Facility

4# 4314 4-0- 4 44 4## 4#4 44.

- 431^4 : 44 172 bar, #S 353 °C (tube side),

44 10 bar, 100 °C (sheU side)

- 4 "o'44 : #

- 44 : Inner & Outer Pipe —► A312-TP304

- Tube : 1-1/2 ", SCH. 160S, 1422.6 mm, 2500# WNRF flange

- SheU : 2-1/2 ", SCH. 80S, 1000 mm

- 44 : 4444(8 bar), 44444(RT)

6. Mixing Tank (MK-110)

4. #s 4 431

Mixing Tank# 44"o"4 44 444 444(demi-water)4 4444

444# #44s# 4444 444 #44# 44#4# #4431 44 44 s

S-g-4 44. Tank 444 44444 4444 44 injection line# 4444P-4

tank size# 20 liters. 44444. (s_4 2.8 #S)

- ^4# #4 Line 44^# : Tank 4, #4, 1", Nl, N2 (flange)

- 4444 444 : Tank 44, 1", Cl, (hatch)

- Drain : Tank 44, 1/2 " , Dl, (boss)

4. 314 4 44

4^314# ASME Sec. VIE Div. 1 44# 444. 443144

4# 4314 #_& 44 4 31# 44 4## 4#4 44.

- 431S4 : 44 5 bar, 50 °C

- 4 "o'#31 : #

- 3] 4 : SheU A312-TP304

Head, Bottom —► A240-TY304

- SheU : 12 ", SCH. 10S, 320 mm

- 44 : 4444(7.5 bar), 44444(RT)

- 10 -

Page 23: Construction of The Two-Phase Critical Flow Test Facility

4]3^

1. System# #4

##7}^ ##^]## #4#7] 44 ^ZM# 44# #4#& 7}°}e}7] #

44 Z#4 ##7}^# ^-#47] 4 ^#a^4 #^7}^# ^4#°_g.44##?}^: 4^] #4 4^# 4^47] #4 444- #4 #4# 7}°}e}7] #4 #A] #.# Pressure Control Valve System0] 4 a] 5] Si—13] 4#4 4 4##7}Ai #4

#44 4^1## N2 Gas Flow Control Valve System0] 44s] 44. 4#4 44

4444 4 ##7}^ 44### 4444 4 s# 4# 44 7} 4 heaterg.^] 4

h 444 44 N2 Gas Heater4 4444 444 4 4 N2 Gas Injection Line

Heater?} 44444. ##7#s 4#^] #4 4^] 44 44] 4 414 444 4

44 44.

2. Pressure Control Valve System (PCV-201)

7}. #s ^ 44

Pressure Control Valve System4 4 ### 4444 44 4 4#44

1344& 444 4444 4 #44 4^4 4#4# 44 4 system# 4444

444 3.47}^# ^4^ 444S& 44# s#4#g.4 444^4 44 44# :&444 444. #444 #s&# #4 #7] 444 4^ 4^# 4444 444

444 4-4# 4-4# 7] #4 #^44. 4444^4(120 bar, 251 CM4 7}^

##4 ##44# #444 444 44S44 4#444 444 44 44#

2"& 444^^4 PCV4 4#4# 44 valves 44 #44 #44^4.

1) Valve Size #41

44]#4 4^^4# 3. 447} ^4 4]#4 4# 44#44 4^4

4# # valveg. 444 #4447} 44-#s.g. 444# 44#4 44# v.44

4 47} °] a] V, 4# #44 valve# 4 4 4444 system# #4 444. Valve4

size #4# 444 4# 4^]#4, 4#?}^ #4, #44444 ## z

444 444 #44# valve #4^]#(Cv)# 4#444. ^144 Cv 44##4

47} 4 valve size(40, 25, 20, 15 mm)# 4 4 44#4 valve body type# Modified

EQ% Globe valve# 44444.

2) 41444

- 11

Page 24: Construction of The Two-Phase Critical Flow Test Facility

44 XH 4 4 7l#5] # valve 7]] 3l] °] 5544 # controller0!] 73 #45#

•o-7]*]-(max. 5 kg/m!M 45 spring/diaphragm4 134 54 °!l 4 44 valve 4°]

## 4 55-4 cone4 valve seat4 45-4 4 4 44. Controller# 444°] 444

#5#:(4#44, 4-20mA)4 #545 ^444 44#7](pv-ll0)4 444 44

444 44 4444 47] 44" actuator4 4444. IP converter5 controller4

###4 444 #5#M 4444 4444 4 4 5# 54444ag.^44 54

444 4444. 44 4 4444 5 bar #54 444 5445# 4444

45- 4444. 444 7]] 4 valve# 45 4 system 444 a^ 2.9, 2.104 44

4 44.

3. N2 Gas Flow Control Valve System (FCV-201)

/}. #5 4 44

N2 Gas Flow Control Valve System// 44 4 4#414414 test

section 44 4444 4454 N2 7]-a# 44 #45-4 4447]-^:7]- 5## 4

455 4455 44# 71544 44 44 4444 system44. 4^4 N2 7}

a 5444 544 54444 4, 54 544 444 444as. 5544734

54M 44 44W 4aaM 445#55 5445# valve 7^]# ^4%

4. 44445554(120 bar, 251 CM4 7}^ 550] ##o]el# 5444 47]

4 55544 45444 444 a^ 4## l"5 #44454 4 system0!]

4-545 valve size# °] °1] 544 44454.

1) Valve Size 44

N2 7>a 54554 44554 44 a 447> 4 4 454 44 54

554 544 44554 444 55 5 valve5 444 444471 445^5

4445 4455 44# a454 44 7i]°] 73^. 4# 554 valve# 44 4

#44 system# 4445# 44444. Valve4 size 44# 444 4# 4 4]5

4, #57^: ##5a 4-4, 444544 55 a444 444 #445 valve

5545(Cv)# 45454. 444 Cv 44#54 47]] °] valve size# 4444#

4 valve body type# Modified EQ% Globe valve# 44445. 44 4 4°!] 7] 5

valve 4554 4# #5 444 444 valve(3/8")# 44/715544.

- 12 -

Page 25: Construction of The Two-Phase Critical Flow Test Facility

2) ##44

55# 4 4 454# valve # # S] ##44 o_ controllers] # 44:4#

-§L7]<^(max. 5 kg/mlS] 45 spring/diaphragm 4 134 54 S] 4 44 valve 5#

44 4 55-4 cone4 valve seat4 45# 4 4 #4. Controller# #444 4 44

4531(4444, 4-20mA)S] #445 544-4 Orifice 55##-54 #4% 44"

S] 4# 444# 544-4: actuatorS] 4554-. IP transducer# controllers] #

444 444 4531# #555 544"4 445# 44 4 4# a#.## 4 545

55 #445. 54444a# 44- 5 bar 45# 444 54 #5# 544-54

#. 5444. 544 #4 valve# 5^5 a4 2.9S] 454 44.

4. N2 Gas Flowmeter (FT-202)

7}. 5^

N2 gas flowmeter# 4557]-## 5£#4 4455 44 4 N2 7/# #

4#45 554 test section# 5445 N2 7]-## 55# 5454 44 #54

44. N2 7]-# 55# 44^44 5-8-4 45#ag. 445a 4444 55 #5

47} -S-444. #5#4 55445 44 230 bar, 5^ 100 °C4 ^4# 5554

a# l"4 N2 7]-# 54#44 45544.

5. #445

44 #5 S] 444 55## Hoffer Flow Controls44 turbine type#

44544. Turbine type 45## 454 turbine 4 444- a] #5# 44 # °]5

4 5 44# 454# #4a#4 5444^# 4# 4454. #54 4

#4 555 4#4 45# #5# a4A]-&# 5# 1-1# 455^4.

- #45 : Turbine Flowmeter H01X1-30-B-1(RPR51S)-F25CS-CE

- # 55 : Hoffer Flow Controls Inc.

- 5544 : 0.012 - 0.67 kg/s at 175 bar, 87 °C

- 5555 : ±2 %

- 4 5# 4 : 1" sch. 160

5. N2 Gas Heater (HE-210/220)

- 13 -

Page 26: Construction of The Two-Phase Critical Flow Test Facility

7}. -0-3E ^ -#71]N2 Gas Heater4 4 #47^7]- &#4 444^ 4444 444 test

section 44 444 4444 N2 7^# 444^(^4 80 °C)& 7}#?}^ 444

47] 31% 4444. Heater^ 444 447}^ 44"^a(GT-230) xM4 44 4

44 ^4444 4444 444 4^4 4^ 444 2^7}^ 4-4444 heater

# 44 44# m 44 44 44 m4^4 44 444^# ej-^c]-. Heater^ 4

44 4 4# 43=4(0.5 kg/s)-5-5, ^4 4 H N2 y}^y} heater vessel# #444

44/LV(4i:1| 80 °C)44 7]-‘jt4(V# a]4444. Heater Vessel 4 7} 4=^- t\

#4 ##4 444- tfl## 7i5l 2.114 444 44.

- N2 Gas 4444 44i=# : Heater Vessel #4, 1", N1~N4 (flange)

- Drain : Heater Vessel 44, 1/2 ", N5 (flange)

4. 44 4 44

Heater Vessel 4 4 (V 7)144 AS ME HAS) Sec. VIII Div. 1 & Sec. II

Part D 44# 444. 4^444] 4# 444 ^_s_ 4# ^ 4# 4^4 4

44 44.

- 44^4 : 44 250 bar, 150 °C

- 4447)1 : N2 Gas

- Heater : 30 kW (15 kW x 2 ea)

- Heater Rod : <pl8x2895L mm (Watlow)

- Heater Vessel : sell. XXS, 3225 mm,

- Round Cap : sch. XXS

- 71] 4 : SheH A106-Gr.B

Cap -+ A234-WPB

Flange, Nozzle —»• A105

- 44 : 4444(295 bar), 44444(RT)

6. N2 Gas Injection Line Heater (HE-230)

-0-^ 4 44

- 14 -

Page 27: Construction of The Two-Phase Critical Flow Test Facility

N2 Gas Injection Line Heater4 #2# 4 it## 4 ###

44## 4#4 N2 Gas 7}# heater(HE-210/220)4# 4##2(80 °C)2 7}#4

4# ## N2 # 7]-#45i44- ###4 4 #4 #44# #2# 2#4

#7] 4 % #22 7>2 #444 444 heating wire# #4 #4 44-.

4]4^ ##41#

1. System# #4

##7]] ##4## 4-4-0-7] 4 2#2## ^#4# 4444# 2###

test section# ##4 ##4-44 ig### 444#44-. 4471] ##

a] 4# N2 #-2# test section4 th47] 4# 7]/4 ###7]- #444

912 ##### #W4 4# ##4 4 ##444 4## 7% 4# 4# quick

opening valve7]- test section4 4, #44 ##44 $14. Test section# 4# ##

4 ##4 4 47]]^ ##4 4# #44 suppression tank4 4 4444 4 44 #

44# 4#44.

2. Coolant Flowmeter (FT-301)

7F #2

Coolant flowmeter# #4 #7] tfl 2#2## 4#7]]y\ test section#

##4 44 ### 4 #### 44### #4## 4#444. #4### 4 4#4 4424^ #44- ##44# 22, 4#4-4 #24 e ### #222

4#44 #44 ##244 44# 4## 2.444# 44-. #4-4 44 444

4 ##44 2#24# 2#2#(172 bar, 353 °C) 24# 44444 #2# 2

### #4# # #44 #2 ####4 ^4# 42## ^24 #4#4# 4

4444.

4. 4 #7]-#

44#44 4#4 ##4# Fisher Rosemount## Probar type# #4

#914-. Probar type ###|# Pitot tube4 44# 4## 422 44444 2

##4 4##4 44#44 4# 44-# #4# 7M2 44-. ###

4 424 4#4 a4x]-&# ## 1-24 4 ##914-.

- 15 -

Page 28: Construction of The Two-Phase Critical Flow Test Facility

- 444 : Probar Flowmeter PBR+26S

- 4 4" 4 : Fisher Rosemount (SG)

- ^444 : 42 kg/s at 120 bar, 320 °C

-: +0.5, -0.7 %

- 4-§-44 : 4" sch. 160 (ID-87.32 mm)

3. N2 Gas/Coolant Mixer

#T 4 44

N2 Gas/coolant mixer# 4#^7j-A7j- #44 4 4## 44#4 444

test section 44 4444 44-§-7] #44 4 4 4" 4 4 N2 7j-A 44 4 4##44

4 N2 7}## ggej-4 #44# 44# 44. 4"#% 4^#4## 444 4#

^47W 4^7}# ^^7} ^#2.# 41i44 4 444 44

444 44. 44 44 4444 444444 60°444 4 44444 4 444

& 44444. 4^44 a4# 41i##4 44 #440.# xj.#ej-7] 4>3

mm 44, <P6 mm 44, <t>9 mm 444 44444-

4. 7l#A}^=

44/444 N2 gas/coolant mixer4 7) 4444 444 4—4 444

444 ti4 2.124 4 44 44.

- Injection Hole Size : <t>3 x 4 ea, (|>6 x 4 ea, <t>9 x 4 ea

- Hole Injection Angle : 444444 60°

- Injection Hole Location : T/S 44 4 770 mm

- Head4 Injection Hole 4444 : 1/4 "x 12 ea

4. Test Section

7}. ## 4 #4

Test Section 4444 4444# 4444 #444 4^444

4-o-4 4 ### 1600 mm 4 Taj T4# 4S-444. Test section# 7]/4 #4

444 quick opening valve 44 4 #4144 444 44 point# 444 4 $1#

4 44444. 444 444 test section# sharp edged pipe 4 4# 44 20

- 16 -

Page 29: Construction of The Two-Phase Critical Flow Test Facility

mm°l] 4 °1 300 mm (Tl)4 4 4 10.9 mm°l] 3=°] 1000 mm (T2)# 4444 4

^4 4#4^4. 5# 44#44 7]&& #^g# 444 T2 test section# 44#

5 7]&# #4# test section# ###. 4144^4.

4. 4 #44

44/#44 test section4 7]#44# ^}4 4 4—4 #414 4## ci 4 2.13, 2.14, 2.154 444 44.

- 4 4 : Sharp edged, Pipe

$20 x 300L (Tl), $10.9 x 1000L (T2) for P, T Measurement

$10.9 x 1000L (T2-u) for Void fraction Measurement

- Flange : ANSI 4 " 2500# WNRF, A182-F304

- T/S : $20 x 300L, $10.9 x 1000L, 3/8 " sch. 80S, A182-F304

- Pipe : 4 " sch. 160S, A182-TP304

5. Quick Opening Valve (QOV-301)

7k #5

Quick opening valve# Test Section #44 4444 444 44#7]

4 447M #^544 ##44 #^?i]4 4444 ^ $}4?} 4^4

44]#4 4^# #^44 4# 4## 44. ci4v.5 valve 444 e

150 bar)44 valve4 44 7^4 4#4z 4444 444 44. 5

4 valve?} 44 44 4 4 # ?] 44 °] ##444 44.

4. 4 #44

44544 4 44 QOV# Globe valve# 44 44#4 ##44#

pneumatic controller# 4#44 4- 4 #44# 4#4 ##4 valve #5# Cl 4

2.164 444 44.

- 445# : 172 bar, 353 °C

- 444 : 4444

- 44?}4 444 4 : 1.0 sec.

- 17 -

Page 30: Construction of The Two-Phase Critical Flow Test Facility

- 4 #4 4 : 4" sch. 160S (087.32 mm)

6. Suppression Tank (ST-310)

7l. #3 4

Suppression tank# #4A1 test section# #44 3# #44 # 3.#5)

#, #7] 4 N2 7}3 ## MW ##44 #4 4 4444 # 4 #3 4 #4

#4% 44#7]44. 444 #444 444# 4%4 #7]# MW1 %44

4 #4 #3 #44 ##444 44 444 #4# 444 4# 44## 4 #4sparger #^7} ##W. W] #4 4 3###4 #4# #4# ##4

433 4# 34% 443 #444. ^34 #-§-4 44-4 5 bar# 44 ^3#

MM34 44#% ### 43 4 #4 #3/1 60 °c 4%7l 43# %44.

^34 ^3 44 #444 4444 #^%4 4% ^3 4 ##44

4 44# #7] 444 flexible joint# A>#444. 43 4 ##44# 4Til#4

4## 4 #44 #44# 444 sparger4- 4444 44. #7] ^ 3###4

#433 4% 44#%# 47] 4M 4a ##44 4# ### 44# 444

44.

- %#7]]4-#^# %#3# : ST-310 ## #4, 4", N1 (flange)

- 4# 44 4#3# : ST-310 ##, 8", N3 (flange)

- %4# #4 4%3# : ST-310 44, 4", N4 (flange)

- %4# 4# 4#3# : ST-310 44, 1", N5 (flange)

- Level Transmitter 4 #3# : ST-310 #, 44, 1/2", G1 (boss)

- 3344 4%3# : ST-310 #4, 8", N6 (flange)

- P, T tap 4%3# : ST-310, 1/2", G2-G5 (boss)

4. 44 4 44

#344# ASME 334 Sec. Vfll Div. 1 %4# 444. #3444

4# W14 #3 4# 4 4# 44 4## 4#4 434 444 4## 34

2.17, 2.184 444 44.

- 18 -

Page 31: Construction of The Two-Phase Critical Flow Test Facility

- 43M : 43 5 bar, M 323 °C

- 3443 :#,#/]- ^ : 43 SS400, Flange A105

- 43 (shell) 43 : 12 mm

- 3343 33(head) 43 : 12 mm

-34:33 3,000 mm, 43 2,850 mm MM 17,000 liter)

- 34 : 43333(RT)

1. System-3 43

3437}^ 4444 4344 43 3-3333 3^7}^ 43344 434

34 43^33 334 43 3 43 3-z 7}#434 4344# 4343 34

43M 344 44 3A.& 4 150 bar3 9,090 liter 443 447}^ 3ag_3g.

43 4^7}^:# 4444 447}yz# 7}3" 433 3 4 Gas booster 3 Air com­

pressor 5. 433 7>4 3—3 3 1,800 liter 443 2 33 3 4 7} >24 4^3.

(GT-210/220) 4 1,400 liter 443 447}34^443a (GT-23014. 4333 4

4. 347MMa34 343 434 4343 34 4333 4^ 434 34 4

333 3-333 343 ^4 447#S 443 200 bar 3444. 7}43^ 447}

^# 43^444. %}444. 3#334 4344.7} 3333 44. ^4 7}^ 44

4434 4444.3 34434 344. 3 4433 4333 33. 3447}^ 3444 3344 43 43333 447}^ 343 34^4 3.3 2.193 334

33.

2. N2 Gas Supply Tank (GT-210/220)

4^7}^4#4a GT-210/2204 Pressure vessel (PV-110M3 434#

Test section# 433 4#4 34 Pressure vessel 43 334 434 344 4

3333 343 3434 4^43 3133# #47}4# PV-1103 #433 33

4343. 4T7}yzir4^a.3 434 Pressure vessel33 33 44434 120

bar# 4^33 44 4333 434 4 4^4, 3^7}^4#^a3 43 434

- 19 -

Page 32: Construction of The Two-Phase Critical Flow Test Facility

4# #4 #ayj-a ###a# -§-4# 3.6 m'S # 4# ## 44 444

133.8 bar7}44 PV-110 4 44 ## 44^4 13.7 bar4 44/} 44 ##4 4

#4 4 as 4&44 44 1.8 m'4 44# /j-4# 244 #a44#a [##4^:

44#4(NK)]s 4444 4 #a4##a#4 #4# 3.6 nts 44444.

##4 #a###a# ^a/j-a# 44 200 bar, #S 25 °C#4 44 4 20 mm

4 Test section# 4#4 44 ##S#4 #444 120 bar0!]4 #4# ## #

#44 #4 #a## 4a GT-210/2204 #a/]-a4 #4 4 #a #4 44#

# 2.14 44444. 4##/]-a 44## 44#4 ###444 #a/]-a##^

#44 #44 ##4a##4a 4 as#a#4 ^a4#4s 4 44# # 2.2

4 # 2.34 44 444%4. #a## 4 a (GT-2l0/220)4 #4^4# a^

2-204 44444.

3. N2 Gas Injection Tank (GT-230)

4T.4aklS##4a7l N2 Gas Injection Tank (GT-230)# #4 4 Test

section# #44 4#4# ##44 4##4a# #444 44 #a4a4#^a #4 ### 4#44 4aifl 4a.4a4 44# ###S 444 Pressure vessel

(PV-110) 44 4# #-4 ## 4## #4 4a Test section 4# 44 #a 74

°c 4 44#4 0.5 kg/s# #4# # 4a# 444%a, #ass#a# #4 4

4# 44 44 44 #a# #4# 1.4 m'S 44444. 4##/]-a 4### #

4#4 ###44 #ayj-a#44#4 444 N2 Gas Injection Tank (GT-230)

4 4#4& 4 44# # 2.2 4 # 2.34 44 44444. a# N2 Gas

Injection Tank (GT-230)4 #4^4# 2.214 44444.

# 2.1. ### #4 #a## #a4 ^a/j-a# 44

# # 4 # # #

4 4 (bar) 200 133.68

# a (°C) 25 -18.76

4 a (kg/i#) 226.17 177.17

# 4 (kg) 814.2 637.8

- 20 -

Page 33: Construction of The Two-Phase Critical Flow Test Facility

a 2.2. ^ Gas Injection ## 4# %J&

GT-210/220 GT-230

Volume 1.8nf 1.4 m3

Dimension V609.5mmx7,755mm L 'l'609.5mmx6,150mm L

Max. filling pressure 250 bar 250 bar

Hydraulic test pressure 417 bar 417 bar

Total weight!approx.) 2,655 kg 2,125 kg

Material Cr-Mo steel Cr-Mo steel

it 2.3. 4 #.43# #43 5 Gas Injection 43# 7}^

4 4No GAS SUPPLY TANK

(GT-210/220)Nz GAS INJECT TANK

(GT-230)

^ 4 41 ^ 41 ^

4 # 4 (# 4)

3,600 liter (1,800 literx2)

1400 liter

44(44)4 4

3.6 m3 1.4 m3

43

4# 44200 kg/cm2 200 kg/cm2

4 a %J 4444 (NK) 4444(NK)

4. Gas Booster (GB-210)

4# Gas Booster (GB-210, Model: AGD-32, HASKEL INC.))# ## #4

44 °1 150 bar'll 4 #4# Tank Lorry## Bj 4#7j-a# ##4°}- 4#ir#4#

4 44^ 2^4 4#/J##4^3 (GT-210/220) 4 Nz Gas Injection Tank (GT-230)

4 44 200bar4 4#4## #4444 444 4#/J## #444# 4444.

4# Gas Booster0!!4 4444 4 1= 4T4—4 4 41444 145- PressureVessel (PV-110M4 44#4 44# 120 bar# 444 4#4 4#/J##4^3

GT-210/2204 #4444 4 4#/J# #4 443# #444 # 4# 4#4 4 5.43. 44. 4 4 444 4444 44.43 Tank Lorry# 44.4^43.44 4

- 21

Page 34: Construction of The Two-Phase Critical Flow Test Facility

4?}4 444 9090 liter (505 liter x 18 bottle)44 44 4^7}^: 44 #44

200 bar#4 7}4# 444. 4^ Gas Booster# 4-&- 71?! A}^^- a 2.44 444

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4 4 GAS BOOSTER(GB-210)

^ 44444

(AIR 444)

44(44) 4 4 181 Nm3/day

#z A}4 200 kg/cm2

4 HASKEL

5. Air Compressor (AC-210)

Air Compressor (AC-210)4 Gas Booster (GB-210)# 4444 447}

4# 7}## 7] 7] 7]7]g. 21 444 Gas Booster (GB-210)# 444

44# £444 4444 4 7 kg/cm2g4 5. -fr44r 2.1 Nm3/min. 444 Air

Compressor -§-44 -8-44 AS, 44 444 Air Compressor (AC-210)4 444

4# 44# 444 4 4^4 44444 7.1 kg/cm2g4z 44 44 444

9.91 kg/cm2g5L 443. 444 2.518 Nm3/min.# 444 7}x]^ Air Compressor

# 44444. Air Compressor (AC-210)4 4 44 50/4 Air receive tank

(AK-210)7} 4444 #4 44 Gas Booster(GB-210)# 44# 4

4444 #4.

- 22 -

Page 35: Construction of The Two-Phase Critical Flow Test Facility

1w

nm 2.1

Page 36: Construction of The Two-Phase Critical Flow Test Facility

: -'S-e

SCT JEONCWOO INDUSTRIAL MACHINE CO., UP.PIPING AND INSTRUMENT DIAGRAM

CONTPliTOtt (J’«. NO.

2.2 Him#]I± gj^l%W a8§11 P&ID

Page 37: Construction of The Two-Phase Critical Flow Test Facility

aswiGiwjf«ej wn.t >r<»)

jconcwqo gw machine c&, no.gntSSOT VtSSEL PV-I1Q AS5*>

3iy 2.3 Pressure Vessel PV-110 ASS'Y

Page 38: Construction of The Two-Phase Critical Flow Test Facility

QUAIL V

BOTTOM HEADdetail of n:

DETAIL Or LUG

DETAIL OE G5

DETAIL OF VIDETAIL OF SI & S2

CONNECTION DETAIL OF NOZZLE G!

DETAIL Of LUG

JfONGWOO INDUSTRIAL MACH1NC CO., LTD.

DETAIL OF BAFFLE MS 5I> RB tipisXI tiINSULATION SUPPORT RING

3H 2.4 Pressure Vessel PV-110 Head & Nozzle Detail

Page 39: Construction of The Two-Phase Critical Flow Test Facility

NOZZLE Uf.T

ncuu "a"tiayaaeissAM stC.VHI Div,! (im EDITION WQ. I-I'M ADDENDA)

,10101 err. CVH) ( % )

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vwm Tpa

MB JEONGWOQ INDUSTRIAL MACHINE CO.. LID.imm PRE% (kq/nn7)

A SHtfjHWA ELECTRIC HEATING.OPER. PRESS. (kg/cm*) ELECtRIC HEATER K-UO/m/lSO ASST

1MM-6-t>-OC2(loM)

DATADESIGN

3S 2.5 Electric Heater HE-110/120/130 ASS'Y

Page 40: Construction of The Two-Phase Critical Flow Test Facility

8

18 1IM mi I III—sHI IF -(I 11 dl IMOH 4IH IIP* H» M~AA

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US 2.6 Non-Seal Canned Pump CP-110

Page 41: Construction of The Two-Phase Critical Flow Test Facility

18

put riii r'.f-f-iMi1 ii-Mf;n

DETAIL OF PLIT PIN

DETAIL Qi

FOR Mlc U-BOLT/rjut-

m JEONOWOO INDUSTRIAL MACHINE CO., LTD.rr: LINE COOLER HX-110 ASS'YLIST or no:die

TP—10P*-O-D—00311 /g)

US 2.7 Line Cooler HX-110 ASS'Y

Page 42: Construction of The Two-Phase Critical Flow Test Facility

f M ■

BASE PLATE OPffiEtJfATiqM DTA1L OF CAPPLAN VlCW

detail or A

DETAIL OF BASE PLATE

Bffll JEOHGWOO INDUSTRIAL MACHINE COM LTD.

MO'INC TANK MK-1 ID ASSLNBLi

W\± 0i§S5 8)m?aw iut*Q«ic isic puirtj'd JtfWK PliGKB K*fL*?EiHiNt ijKjii y!-;j5i 5£ - ;/i;|

NOZZLE LISTDESIGN OAT*

3H 2.8 Mixing Tank MK-110 ASS'Y

Page 43: Construction of The Two-Phase Critical Flow Test Facility

ICO

I

ACTUATOR VALVE

TechnicalDATA

SiZE(tW> 15/20/25/40 AOperating type Thrust forceEnd. connection ANCl Ctass2500 FLANGE

Opr, Pressure 200 Kgf/cm2 (M*x)Opr. Temterattiti 601 me*

----- --------- -----------------

Housing f Body AC4C-T6 BUS-304MATERIAI piston / disc AC8A-T6 SUS-304

Output shaft S US-304Seat r-TFE

AIR INLET RC1/4 (Air Supply: 3.6 Kgf/cntf)

SIZE/A) hi 015/20Z25A 515 144 104 265 0 250 310

40A 545 179 134 265 0 250 310

I/P ConverterController S45CCone SUS-304

Piston SUS-304Body SUS-304

Bonnet SUS-304

Shaft SUS-304

Bracket FCD400

Diaphragm NBR

ACTUATOR AC4C-T6

DESCRIPTION SPECIFICATION

DeSXBY j CKO BY APPROVED PRMCT

2001.04^24 | SCALE

AGEDAEGI IND.CUSTOMER a?±

PCV-201.1~4APPR.DW3.

36' 2.9 Pressure Control Valve PCV-201 ASS'Y

Page 44: Construction of The Two-Phase Critical Flow Test Facility

INSTALLATIONrV

"X

4-20 mA ------Daegi Train Scope

Customer Scope!

With inimAir Supply(4~6 Kg/crft ^

11TCustomer Scope

PCV201-1IDaegi Train

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"A

ner Scope

i1

PT-101

0

ITE-101-1 j5

"A'(7^ff

PT-102

Customer Scopi

SYMBOL

S Converter

Controller

PRV

* *

PCV-201(CUSTOMER)

Signal Cable (CUSTOMER)

Customer Piping

Air Tutting (DAEGI IND.) TEE(CUSTOMER)

Block Valve 1/2" (CUSTOMER)

(mm)

\ DEMENSION

200La 300

§55Lv 1056Lb §63

: PT-101pm>3) PT-102(QI|«1^)OI|

tfXISUI SSC(|tC|2*£9|A|g.* NOTE : Train 5m OlUI.*

ccecnipnoN aPECtf (CATION REMARK

AWROVIb

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axmInstallation DWG,

PI -WtH

HU 2.10 Pressure Control Valve Installation

Page 45: Construction of The Two-Phase Critical Flow Test Facility

1COCO

HU 2.11 N2 Gas Heater Vessel HE-210/220 ASS'Y

Page 46: Construction of The Two-Phase Critical Flow Test Facility

w4^

N2 CAS INJECTION NOZZLE 1/4"- 12 EA

I Inlei) Outlet)

N2 GAS INJECTICII SECTION

DETAIL OF A

44

SLCTiOM"-<t—> 1" SECTIOfl"X2-X2"

"W

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,4-

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NOTE ; INCLUDE TUBING MATERIAL T.C. : 2 EA

A226-81'l«-a Ij7; 6‘ l=U0JtiFSSfGliPXH V 2303* r, AST

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THPiiMin !/<•■ <MCf KPTA5I2-TP3W

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ft roe cMsrwcnw2O0f.0l.11 >4 ISSUE FOP APPSOVAI B.I.CIIUN I.S.&OO .5.800,1 Ml.01.tl 1st ISSUE roe APPROVAL fiJ.CNUII 11800 .1800

NO. DATE OESceiPItON IrTTocT a. 1 w. *PP.JR KOREA ATOMIC ENERGY RESEARCH INSTITUTE

g/21 JEONGWOO INDUSTRIAL MACHINE CO.. LTD.

T|1U N2 GAS HEAD & INJECTION SECTION

NMB516LE GAS WJ-F-ASE C8 1CAL RSM

CCtllPACW Owe. NO. TR-JIA-IS-O05?rSWK %E°'. °CM* %

NOSE 0

31! 2.12 N2 Gas Head & Injection Section

Page 47: Construction of The Two-Phase Critical Flow Test Facility

jL JL 4

IwOl

-+:'|- ' I- '

- - - - - - - - - , ,—l- - - - - - - - - - - - - - >11— _10 | 31 | s l ?o

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i=:i nz =13 p;»-J- - - - - - - - - - - - i- - - - - - - S—i—i—-1 : 1 5 . -j- 1 1. 1 1 1

DIMENSION OF PRESSURE GAUGE k THERMOCOUPLE HOLES-V

~l1 —fij

/— v..

DETAIL OF PO & PL DETAIL OF TO

/l / L

I.C. SIZE. : 1/16"

PIP5

i

DETAIL OF PRESS. GAUGE

NOTE : INCLUDE TUBING MATERIALS

CEWEF

Id01

HOLEPI - PI6

DETAIL OFTHERMOCOUPLE HOLE

T1,T2,T3,T4,TL

POSITION OF PRESSURE GAUGE k THERMOCOUPLE HOLES

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roe CDNsnuciiuHa. tmun.ift i»t ssur top apppovu

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1,5.600 I.S.BOO

DESCRIPTION i tPN. I OGN. 1 CK. I (Xi.S.BOC I.S.BOO

KOREA ATOMIC ENERGY RESEARCH INSTITUTE

Effl JEONGWOO INDUSTRIAL MACHINE CO., LTD.

TEST 5ECTI0N(620 mm, L=300 mm)

WMOMBJS BL£ GAS MO-fWSE CilTICAl -MCONTRACTOR OWC. NO.

HU 2.13 Test Section (ID=20mm, L=300mm)

Page 48: Construction of The Two-Phase Critical Flow Test Facility

4 A 1

l - lT- i -i T a..............................................................-I. jV’T. I. •* A ~ t. -.; 4- '*-+ 4- 4. 4- ■.4. M + Vl ■ 4- v -4-Jt .k

DIMEIISIOIJ OF PRESSURE GAUGE=fi -/ \ v '5

; :DETAIL V DETAIL OF PQ & PL DETAIL OF TO

DIMENSION OF THERMOCOUPLE HOLES

T.C. SIZE.: 1/16"

PL Pt 6

P3-P14PiPO

NOTE : INCLUDE TUBING MATERIALS

CENTER

DETAIL OF DETAIL OFPRESS. GAUGE HOLE THERMOCOUPLE HOLE

PI - P16 T1J2J3J4JL

*<>13

POSITION OF PRESSURE GAUGE & THERMOCOUPLE HOLES

DETAIL OF A

ne-wiF-f 1.1/2'. l=K5$ v, ;w. fir. j 511 nsr acTos 1:10 mm, l=|£$0 mn

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FOP APPPCVAl 8.i.CHurf 5.J.0H 5.J.0HOiJE DESCRIPTION DPS. i DON. CK. 1 CK. APP.

W KOREA ATOMIC ENERGY RESEARCH INSTITUTE

KS JCONOWOO WtWSWAl MACHINE CO.. UP.,,,lL TEST SECTION A?o10.7mm, 1=1000 mm)

\3H-MSIB.E ys TltHWSE CP TICAL M,

CON1P1C1QP DWG. »:0. I TP-JM-T5-161 4*“w y % mil v .w e

2.14 Test Section (ID=10.9mm, 1=1 OOOmm)

Page 49: Construction of The Two-Phase Critical Flow Test Facility

1.1/r 1=261.are* t‘. zsm#.«.

S88INO UNGERTTMSI0N MR5UPWJI PUIC :aW SECTIO* A51H?3D< 3/r. 5CH50S«£T 'ECHOS V, IS 1»

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KOREA ATOMIC ENERGY RESEARCH INSTITUTE

JECKGtOO INDUSTRIAL MACHINE CO.. LTD.

TEST SECTION 8(010.7 mm, L= 1000 mm)

HGHONKNS IE QW mWz CUICL FJIi

caiiTiwcTosi m. mo.

IEE

HU 2.15 Test Section (ID=10.8mm, L=1 OOOmm)

Page 50: Construction of The Two-Phase Critical Flow Test Facility

.1 i

OUTLINE DIMENSION \ wSIZE GLOBE- 4"

794

650267

hi 215h2 168.5

h3 410.50 (A 210

HEAD OFFICE AND FACTORY

1

10V*tn Cover 9Ut-304

SPRING SUP10 Vain Plat Sus-420J2(TS

SHAFT aus-304Valve Body sus-304Vein Piston sus-304Valve Bonnet aus-304AetMtorOiK Sua-420J2(T6ActuabrBody SUS-304AcbibrBonnet sus-304INDICATOR SS41ACTUATOR AC4C-n_

uartJS)

CAGE :

DA EG/ INO.

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1

Prc#Kl#*T» HfJWmecusmitH

Title: QOV-301 ASS'Y

lOOUDStU____

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NO. MODEL NO. Tag No.

DS30M54S QOV-301

ACTUATOR VALVESIZEfmm) Cfahe • 100*

DATA Ttrust faceMO250GRFKgVCm2 KSfaS)

Opr. Pressure ZOONztonZOpr. Temferetvre 400'Crnas

packingAC4C-TB SUS-304

MATERIAL platan /disc AC4C-T6 SUS-304Shaft SUS-304

Seal SUS-420AIR INLET RC3M (Air Supply: 3 - 5Kg(/cm2)

T

2.16 Quicking Opening Valve QOV-301 ASS'YT

Page 51: Construction of The Two-Phase Critical Flow Test Facility

1s

I

NOZZLE QWNT&TKN

DETAIL "A"

(MfrSS4?^6iesa

Hg 2. 17 Suppression Tank ST-310 ASS'Y

Page 52: Construction of The Two-Phase Critical Flow Test Facility

DETAIL Of SPARGE 42 HOLES jis*3i± ms stops mm

US 2.18 Sparger in Suppression Tank

Page 53: Construction of The Two-Phase Critical Flow Test Facility

DE-210/220

K2GASSUPR.T Bl TANK LORRY

3.^ 2.19. 71]^.

- 41

Page 54: Construction of The Two-Phase Critical Flow Test Facility

in. 19.9

7755

3.^ 2.20 tga(GT-210/220)^ 7l]^

- 42 -

Page 55: Construction of The Two-Phase Critical Flow Test Facility

3.^ 2.21 Gas Injection Tank (GT-23(M 7j]^_

- 43 -

Page 56: Construction of The Two-Phase Critical Flow Test Facility

Net weight n kg

9ma 27 kfi0S*. 91 X 52 i 39 cm

AHh 17n Tim

3.^ 2.22 Gas Booster (GB-2MM

44 -

Page 57: Construction of The Two-Phase Critical Flow Test Facility

nas- Aim m xim

411 7HS.

Test Section# #°] ##^Pb# 5.S]#°] A3

### #### «lj a] *] component0] #. 7}## # ### ##4] Pb# 5-S] 7]

^]?M #^1# 1600 mm #7] 7]-#?]-^# #^]e]-^Z4 ^#tb ^

# ### til] Pb bUb! —5, c]# # test section# ##°] 7b#### ZB] ###.

Test Section^] "%] #### #°b°]: ## ##t]] ## s]- test section ^

^ 7]-#^# ZB] a}7] ^]#7]# ^#tb# Z#7b #7M ebc]-. o]5]tb #7}# #°]

7] 3]aM #^#7] ### #^A]B]e]-z 4#^(4")Z# ab^zn] #^^]

# tb1]##0] tffl-T- ^]# Probar type# 7]-####. Test section0!]# #^A] ibA<§

4# 1M ^ #### 7}&# #^?b7] 3]aM ^^tb 4m#

point# ti]]T|###. #§] #Aj point# # # #°1] #### Pb##°] test sections]

n #S} ## # ## #til] 7b # 7] ^ oj] ###71] ###### sensing line# ##

### #X1 #°] ## transmitter0!] #####. ## ## point# 7] ## 7b #°]

#### ## sensing #7bA]^Z# ###7]# ##a] Z#Z## Ab#4

#4. Test section# 7]/°i] #%#!] 44 quick opening valve Ab°l °!l 5# #4. 4#

°ll Ab## test section# sharp edged pipe # ## # # 20 mm0!] 4°] 300 mm

(Tl)4 4^ 10.9 mm°]] 4°] 1,000 mm (T2)# 4444 #^4 ##444. #4

#4 #4# 7]&& #^# #44 T2 test section# 44## 7]&& test

section# ### 44444.

42^ ^ 44

7b. Test Section I

Test section I# # # 20 mm, 4°] 300 mmS] sharp edged pipe 44

(L/D - 15)# 7M^ ## pipe44# 44#4# 4^47] #44 47]/7]444

4. #Aj4## ##4 #z #S°M °1# #44 test section 4, ## ## ##

444 187]], #Z #4 #44 ### 57]]# 7b#4#4. ## 444# 4^4#

#o]7] ### #4 0.3 mmS] ### ##Z# 447b# 4#4. ##4 #7] A}

- 45 -

Page 58: Construction of The Two-Phase Critical Flow Test Facility

4# #4 2.134 #4.

4. Test Section II

Test section 114 44 10.9 mm, 44 1,000 mmS] sharp edged pipe 4

4XL/D - 91)# 444 ## pipe444 4444# #444 444 #4/%M4

44. #444# 444 ## #&44 4# 444 test section 4, ## 4

4 #44 187D, ## #4 #44 444 57%# 7}44#4. 44#44# 444

# #44 444 44 0.3 mm4 44# #4## 4444 444. 444 #31

44# 3.4 2.144 #4.

4. Test Section II-u

Test section II-u# test section II4 44 7]4# #4# 444 44/

%M4 4## 44 4 44# 4#4 #4# 44 ^4 #4# 444 test

section-4 #4# SM] 44(3.2 mm)444. 4# #45, 44 444 4#44#

#444 444 test section4 44 #444 spring hanger# 4444 test

section# 444## 44444. Test section4 4#4 4444# #4 2.154

#4.

4]3^ #^7] ^4]

y\. Pressure Transmitter

Test section##44 4444# #444 444 pressure tap4 44

4 4M#4 44(1/4 "tube)# pressure transmitter0!] 4444 4#4 444 4

444(1-5 V)# 44 # DAS# #444 #4, 4444.

4. Thermocouple

Test section# 44 ### #444 444 ## #444 #44 #

44# ## 444# 4#44 444 spring## #4, 4]#4^# %M4%#4

noise# 4444 444 #4 #4## DAS44 444^4.

4. v-Densitometer

- 46 -

Page 59: Construction of The Two-Phase Critical Flow Test Facility

444 test section RM 444# 444-44 4&&# #444 44

4 4a 44% test section (T2-u)# %#4%4 44, ^444. 4&# #4#

4 % Y-densitometerfe- test section-4 &4 4 4 44 44 source 4 traverse 4

4 44%4 4%4. 444 44% #44^]# 444a# 44 44% ^44

(source)4" 4% 4(detector) 444 test section0] 44 AS. 44444 444 a#

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44 4444. 444 444 44 44444 4444 44 4#aa 44 4a.

4a 44 44# 4&4 #4 4^44. 4 4%44# 4444 444 44 4

a# 4a#^A4 4444 4 component ^ ^44## 4444 44 4 4#

# 44# 4^4^4. 4##4 4a 444 44 44 ^ 444 44 44a a

4444. #a# 444 44 444 444 4#4 44.

- Design Code & Standards

steel : 443= 444# 4 44 (444444)

Concrete : 4id a## 44 #a4m #^44 4#

- Strength of Material

Concrete : 210 kg/cnf

Re-bar : 4000 kg/cnf

Steel : 2400 kg/cnf

Connecting Bolt : High Strength Bolt(FlOT), Anchor Bolt(SS400)

- 47 -

Page 60: Construction of The Two-Phase Critical Flow Test Facility

*i| 5^ 7414 ^ ^1 o-| 74| #

4W 447] ^

#4444 2.^ ^]&7] Al^ PLC #4#3^33 ###3,

#44444 ##44. 3#, #3 #3# PLC si 4#3±i ##3## ## tflt§

4 #44 4 a# #3# ajtii^H #444 #4444 #4 #4 444 4# 4#

# # 43# 44444. 44 # 444 ### 44 4#4# 4#4# 444

4##34(DAS)33 4444 #44 4444 ##433 #443# 4^4.

444 ###344 4444: 4444 44, #3 4444 PLC 4 444 4

##34 44^ 44 ##4#4. zi#4 44, #4, 343 44 4444 4

3 47144 43 45:44 71 (Signal Conditioner & Isolator)# #4 DAS 4 PLC

4- ^## 4 43# 444SS4. ## #444 444 444 4 44 #44 71

44, 44##- 4-20mA 4##3# 4:44 4# ## 444 # 44# 4~20mA

4# 4 l-5Vdc 4433 #4# #4444. 4s #44 44# 4#4 #4.

- Model : MS-2904 (Maker : Mtt)

- Input : 4 ~ 20mA

- Output 1 : l~5Vdc for PLC Analog Input Module

- Output 2 : 4 ~ 20mA for DAS Analog Input Module

- Accuracy : ±0.1% less

- Response Time : 30Hz - 3dB (99% - 25ms)

#4#44 #4# #3# 44 44# #3, On/Off #3, 44 #3(Safety

Valve)/} 4-4- #44 44- #444 #4. 44 44# #3# #4#4 #4 4

4#4 #4 43/1-3# 4## 33 4444 44 ##44. 4# #3# ## 3

#4 44- 4 4# 344 #3# #444 #4# # 43# 1# #±1143# 44

444. On/Off #3# 4# 7134 444# 7}# 3# ##44 44 #44 #

33 #44 4## 4# 44 444 4444 #4 344 4444# 44 4#

#3# #4444. 4443# #4 #44 444 444# %1#33 4#3#

- 48 -

Page 61: Construction of The Two-Phase Critical Flow Test Facility

Tj)## l## ## 7}^3.Q #4#4 ##5)# A>J15. o]§fl #7|14 4

4# a#Ag. 44## 4# 4444- 44 #4^-4# ## ^44^4-

1. 4471

4. 44 4471

^^4447^ #^7)-a^a 44, 4444 44, 44# #s 4#4

# 44, 44711 4## ##4 44, 444 4a ## ## 4444 44 #4#

44 44 4144# 44444. 4 5.14 44 41444 44 444 44 44#

444a, 44 n-14 444 444444 44# 4444. 5 5.144 pt-102#44#4 444 #44 ##^l#4s ###4 44711 4# ### 44#4 4#

4M4 4444. PT-102, ##4 #^7}a 44(PT-205), ae)a ##4 4-

##a## ## 4144 #4# 4# 444 4###4(DAS)AS 4444. ae)

a 4# #a# a## a# 444a# PLCS 4444 #444 #4#4 4#

# 444 # 44. a 5.24 4444 #44 44444# 4444.

4# 4444 a## 44 4# 444# #44 44# # #44 4# 4#

# 444 PLC 4 DAS4# ### 444# a#4#4. a##m# Inspection

Report Vol. 24 4#44a, 4Si)44 44 #### Test & Inspection Report

Vol. 24 44444.

4. #4 444

^^4^MlA)# 4## #s ##4# #4, ##44 #44# ##7}

# ##, 447H 4## 4^ 44 #444 #4 #4 444# #44^

4. #4-711 4#### ##4# #4# ##-#4 #4# Probar 4# #44# 4

#44 44 44. Probar 44 #44# #4#S4 b)# 4*144 44 #4#4

a## 44444 44 4## #4#44 44 4#44. a#a, 4#7>a 44

###4 ^*1#^ 4S7}a# ^4 #### 0.56mVs #7114 #

#4 aSTii 44. 4474 o)# #37#41 ##44 44 44 4# #441# #4

444. 44 4# #44# 4# ##ss 4#4 #44# 4# #4

- 49 -

Page 62: Construction of The Two-Phase Critical Flow Test Facility

314/1# 444^4.

a 5.3# #4 314/M 4^ 3144 44 #4# 443M, 44 n-2# 444

44 314/M 44# 4444. a 5.3314 FT-202# 44 444 4#

?M #431431 4444. ##7}2 #4444# FT-202 4^4 4444 44

#4 44 4# 4444 #43l4!^-(FCV-202)# %}#2g. %44. FT-202

4#4 444 #4(FT-30l) 4## 444 444^4, PLC 4#4, M2 44

45.4431 #444.

#44# 4-4 #4 31444 214# 4# #4 3144# 44-31 444 4 44

31 4# 44# 444 PLC ^ DAS314 444 444# 244^4. #42 4

4 #431# 4#4# 4a<§44 4# 4# 4## 4444 #44# 4##

444. -24 4## Inspection Report Vol. 231 4 444 2, 31#4 44 44 4 4

4# Test & Inspection Report Vol. 231 44444.

4. 44 3144

4444314# 44#4 444 ##4 !a4 44# #4471 44

444 #4# 443144# 444^4. #4, 44#431# 3l44(Radar) 44

4431444 44 4 4444 44. 44#44 44 #4# 44 #44 44

#231 44 44 4# 44# #44#4 4#44. #44 444 443144#

## ^ #431 44 #44 44 3M 5.44# 31444 444 44# 4##

4 444, 3144 44# 5.4 3144 4# 44 44% 44% #4# 4 44

#4-4# 444.

4M#/|31 444 LT-10K444)4 LT-102(3144 4) 4s# 3144 4#4

4444 #4 4 444 4#3l 4# 4431 #4 4 #4 44# #4

4#31 4#44. s4, 3144 444 #4 #4% 44314 #44###

(QOV-30D4 4#44 44. !4# 4# 444 44#4 31 ^444 2# 4#

4z 44 44#431 ##4271- ### 3M31 #4# %# z# z#4 4#7}

#5. 4# #445.5. ##4 3M4 #44 #44 44(baUoon

effect)*! #4# #2 44. 44# 4444 3144 44 4431444 #447}

44 4(4 70crn) 442 4244 #44#!## 444^# 4#44 44 42

31 314444. a 5.4# #431#7M #4 3144 #4 #4# 4431z, ##

n-3# #44 #431#7M 44# 4444.

- 50 -

Page 63: Construction of The Two-Phase Critical Flow Test Facility

44# 441444 ^4# 41 44144# #4! #4# f #4! ##

#4# 7M-4 PLC ^ DAS14 ### 144# a##^#

Inspection Report Vol. 21 #1443., 152 5#}-# 44 # # a] ^ Test &

Inspection Report Vol. 24 41444.

4. #£ 4#4

#444! #41 S# #^1#4# #44(Thermocouple) K 4# 4

JL, #^l#44 PLC 4^14 224 444 4444 5.#-£#(kx-hs, 4#4

4)# 4-0-44 41444.

44-0-44 #^# 4444 44 T/C Spool Piece(TE-101-106)# #4444.

#4#4# 1&& 4 4##4v.& #^ ##44 14 44 44 44-0-444

#^#&# 44 4z, 4444 4^# 44 414 44# 4##& i.3m44

5.3m44 80crn 44 s# 644 444# 44444.

DAS 4 PLC4 ###& 444# #^ 444# 44 4444 44. # 5.5#

#^144# #4 444 44 44# 44!z, 4# n-4# #44 #^4444

44# 4444. 5. 5.6# 4411 #44 #^444# 4444.

#^4444 at## 4# #^4#4# 14(Chamber)l #444 4# #^#

#-# 4 44444# PLC 4 DAS! 4 444 444# a#444. a#4##

Inspection Report Vol. 24 4#442., !&# A}# #A} #44# Test &

Inspection Report Vol. 24 44444.

2. 414 ##-

4. 44 441# LL#4 (PCV-201)

444414# 144 4# ### ^##7)1 ### 4^4 #4#

g. #441 #44# 44# #144. 4 14# 44# z4 l#7l-4la.g.#

4 444^.# ##7}^ 4# ^#44 #4#4 4## 144# #44 4114

1444. ##411 44 #4444 1 #44^ 4#(##sii 44 &##

44 #7] 4#)o] 4s# i#i ## 4444# s# 4-0-1 4 44# 41# 1

4# Ml44g. ##44 #4444. 4# 414 #g_# Modified EQ% Globe

valve# 4, 44# 15A(15mm), 20A(20mm), 25A(25mm), 40A(40mm) a}-o]2.# 4

- 51

Page 64: Construction of The Two-Phase Critical Flow Test Facility

%4. 1^ 144 Hi 44 47fl4 is. 444 444 #4# 4444

44444 4444n# 44444.

3.^ 5.14 4114in4 44 444 4444. 4114in4 44444 4

44 414444 444 l!4(4-20mA)4 4# 4-444 in 4^44 414

44 444 114n 4444 444 4%nl in44. 4 in# 44% 44

4 pid 44&44 44 44 444% ini 444^4 n42, 4 41m

4 44 l^nl# 7}4 44 4 nil 4# 444 Pm 44" % #4444

44 44 4444.

from control room4~20mA(digital value)

and Valve selection

214 5.1 44 4 4 in 44 44

4 llnll 4# in 114 444 44.

- 4444 41^44 30bar4 80bar 44! 1^1 44

pcv 201-2(20A) #n# 4_W4 44 44144. 4, 44(4#!^

14 4 444nla4 414 4#1^ nil 4144 4144 4)

4 4444 70 - 80bar Inn 44.

- 4444 44^44 90bar4 120bar A}o]! 444 44

PCV 201-3(25A) 4-4 4, 120 bar 1441% 444 80bar 44 44

4% 44 #2, 444 nl 44 1% PCV 202-4M0A)# 1

- 4#!^ 14% 41444 414 target 414 n% 14n 5bar 44

44 4444 %.

- 52 -

Page 65: Construction of The Two-Phase Critical Flow Test Facility

441 15 1##4# 441# a 5.74 #4. #11, 10.7mA(11577)4 14

#14 1# 1#4 PCV 154 144# 4444. 444 Is. 44 &#

10.7mA! #444 444 ^}55 4444 444# 44# 4 PLC 3}4 4 ^

# 44#4 44. 4 &# PLC is# 4 441-4152 #4 s#44 10.7mA

5. 4444 45.5. 4^44.

15 444 444 44.

- 445 : ±2.2kg/cm"

- Control Range : 0.1 ~ 200kg/cm2

- Hysteresis : 0.02 x set Pr.

- Flowrate : 36 ~ 20,880kgAi

4. 4414 15 (PCV-101)

441415 PCV-101# 44444 44 4 145154 4541 4

#14 7}### #1 4-4 #4 4 4-4# 4441 15/} 4# 1 4#4# 15

44. 11 41144 PCV-2014 4# #44# 4# 411415444, 4#4

#41 #1# #!#!, 7}# 4 7}4 #4#41 PCV-101# #4 4114 #4

5 #4 4#5 5# #### 4# 15A(15mm) 44^4 #/5# #55 5#el-

44-. ziBil- 41 #4# 445514 5544 4# PT-102 4114 4#14

#444 4# &# 1441 #51- x}#55 157} #/55 #5# #4444-. 4

#4 14 3M -5 bar4 45115115 2444 #57} ###55 #/5#

4# 4# 44444-. 1# #4, #444 4#4 14 4:# I00bar5 14##

4#, 41 #44 44 &4 lOQbar# &444 #5# 4# 7114-42, 41 4:4

95bar 445 4Se}4 x}# 4444-. PCV-1014 #5 #4# 4-#4 44.

- 445 : 15A(l/24

- #544 4144 : 120bar

Shut-Off Pressure : 200bar

Page 66: Construction of The Two-Phase Critical Flow Test Facility

- 1544 : Grobe, Quick Open

- Body Material : SUS 304

- Required Seat Tightness : ANSI Class VI

- Power : DC 24V

- Input Signal : Dry Contact

- End Connection & Rating : 2500# RF

4. 157}5 55^115 Ml 4 (FCV-201)

55^115# 157}5 w4 1^ 4 4^1# M

4 4# 4444 157}5# 44 1544.

114114# 11541 44 #454 4# 7] m 54^7} 4# 414

4#l5(MOV)# 51455 4444 44444. Bz.44 4^4 5^1^^ 5^.

4 44 #144 41544.

- 4414 444 5.5 15 7} 5 la 4444 444 I20bar 444 4 1

5.7} 4^44

- 1^541 44 414 #5.4 44 RID 1# 4 515 4^#

- #5.4 #4457} 5^ #^1 7}5# 45 7}5 54# 444 # 4#.

4 44 445. MOV 15 5144- 1442, 44-4 44 444 44 544 4

11415 54# 44454.

- 54^ : 3/8"

- 1554 4144 : 120bar

- Shut-Off Pressure : 200bar

- Max. Flowrate : 0.5kg/s

- 1544 : Grobe, Linear Equal %

- Body Material : SUS 304

- Required Seat Tightness : ANSI Class VI

- 54 -

Page 67: Construction of The Two-Phase Critical Flow Test Facility

Power : DC 24V

- Input Signal : 4 ~ 20mA

- End Connection & Rating : 2500# RF

3^ 5.2# FCV-201# 14 ^ #4#1# 4414. 13# PCV-2014 #

4#14 #11 4#1 #4133, PCV-2011 14# 1144 114 44 4 4 44 444 1443# 44444, FCV-201# 444 33# 443 #4(4

#133 44 #4)44 4 3M 44 #4(1# 133 44 444)4 4:44 4 44 4#33 314# 444 1#4. 444, 444 #44# 444 #444 44 FCV-201 44# 3.44 44 3'D 443# 3443# 44444.

a 5.8# FCV-201# 3144 44 4 #1:33 FCV-2014 4444 44 44

4(FT-202)4 44444 44# 4444. #44 44#4 %3 444# 414

4 3^ 441-4433 #13## ## 44# #44# 4#^:33 444

4 13# 4444. 14# 4 444# #44## 4444, 4 44 #44 3

44# 444 444 #44 44133 4# #144. ## #4, #444 4#

4-3 #444# 0.3kg/s3 4#3 4# 444# 40%3 4444 44. 3

44 4 &# 444 &# 33 l#7}3#3(GT-230)4 44# 444 120bar 1

3 444 4 # #44 444.

1444## 13 3#44 44 444 13# 14444 ### 5. 5.84 4

#M 4# 34#4 11# #4# 44# GT-2304 44# 4#44 #44 #

3l#4 4# #444 44. 344 144 FCV-201# #414 433,

111 44# 1 #444 ### 11 # 11344 4# 3133 #41 4#

114# 34 #444 4#1 14# 4433 #41 4 14.

- 55 -

Page 68: Construction of The Two-Phase Critical Flow Test Facility

from control room4-20mA(0-100%

0 — 0.67kg/s

Iso. V/VsFCV-201

5.2 FCV-201 41 4 #4#^

4. On/Off lH

a 5.94 4^411 411 On/Off ##1 4141, ##44, 1^4

4 mi 114 414

4. Quick Opening Valve (QOV-301)

QOV-301# 144 #41 4111, 141 4#44! #41 #& 7i]

411 24 nil #1 1411 4414#1#4 44. 1 mi 14

44 4 41 m# 34 544 4^44 14.

3. Safety Valve

41 #n# 41 41141 441 4441# ml! 11 414 relief

#nl4. 1 #n# ## 441 44 4 44 #4 l#7fn^a(GT-2l0/220,

GT-230, #4)1 44 4111 44. 44-0-11# PCV-101! 11 4144 44# 414 4 44. PCV-101# 4441 #41 I20bar& 4#11 ## nl PCV-201# #4 41114 44m# 41414# 41-0-14 441# l#n#l 414 4 44. # 5.10# 411 4!#n 444 #4 44# 444 4.

- 56 -

Page 69: Construction of The Two-Phase Critical Flow Test Facility

a 5.1 4^

No. Tag Name Service Description

1 PT-101 323 120 N2 Gas Pressure Vessel Inlet Pr. #4-8-

2 PT-102 323 120 Liquid Pressure Vessel Outlet Pr.DAS

3 PT-103 323 120 Liquid Circulation Pump Pr.

4 PT-201 100 200 N2 Gas N2 Gas Supply Pr.

5 PT-202 100 250 N2 Gas N2 Gas Pr. Booster Outlet

6 PT-203 100 250 N2 Gas N2 Gas Main Tank Pr.

7 PT-204 100 250 N2 Gas N2 Gas Service Tank Pr.

8 PT-205 100 250 N2 GasN2 Gas Test SectionInjection Line Pr DAS

9 PT-301 323 20 Liquid Test Section Outlet Pr. DAS

10 PT-302 100 20 Air Suppression Tank Pr.

a 5.2 4^44

trV! Tag Name Description Connection Remark

1 P0 T/S Entrance Pressure DAS/PLC

2 PI T/S Delta-P at 1st Region DAS

3 P2 T/S Delta-P at 2nd Region DAS

4 P3 T/S Delta-P at 3rd Region DAS

5 P4 T/S Delta P at 4th Region DAS

6 P5 T/S Delta P at 5th Region DAS

7 P6 T/S Delta P at 6th Region DAS

8 P7 T/S Delta P at 7th Region DAS

9 P8 T/S Delta P at 8th Region DAS

10 P9 T/S Delta P at 9th Region DAS

11 P10 T/S Delta P at 10th Region DAS

12 Pll T/S Delta P at 11th Region DAS

13 P12 T/S Delta P at 12th Region DAS

14 P13 T/S Delta P at 13th Region DAS

15 P14 T/S Delta P at 14th Region DAS

16 P15 T/S Delta P at 15th Region DAS17 P16 T/S Delta P at 16th Region DAS18 PL T/S Exit Pressure DAS/PLC

- 57 -

Page 70: Construction of The Two-Phase Critical Flow Test Facility

a 5.3 4^

No. Tag Name 44#4&4 #444 Service Description Connection B. ^44 ##

1 FT-101 323 120 1.81 LiquidCirculation Pump

Outlet Water FlowDP: 1/2"

SW #4-8-

2 FT-201 100 200 0.56 m’/s N2 GasN2 Gas Booster

Outlet FlowDP: 1/2"

SW 44#

3 FT-202 100 120 0.5 N2 Gas N2 Gas Flow 1" cs DAS4 FT-301 323 120 40.82 Liquid Test Section Flow 4" SS DAS

a 5.4 4"^ ^#7]^ 4W 4^

No. Tag Name44#4&4

#444- Service Description # 444

1 LT-101 353 120 Liquid Pressure Vessel Level DAS %4

2 LT-102 353 120 Liquid Pressure Vessel LevelLT-1024 4#,

DAS 443 LT-301 100 3 Liquid Suppression Tank Level 4-4#

a 5.5 ^#7]#| 4W ^7:] 4^

No. Tag name44 #424 #4

44Service Description 4 4

(t)44(bar)

1 TE-101~06 353 120 Liquid Pressure Vessel Temp.(T/C Spool Piece) 44#

2 TE-107 353 120 Liquid Main Heater Inlet Temp. 44#3 TE-108 500 120 Rod Main Heater #1 Temp. 44#4 TE-109 500 120 Rod Main Heater #2 Temp. 44#5 TE-110 500 120 Rod Main Heater #3 Temp. 44#6 TE-111 353 120 Liquid Main Heater Outlet Temp. 44#7 TE-112 353 120 Liquid Line Cooler Outlet Temp. 44#8 TE-113 353 120 Liquid Pressure Vessel Temp. DAS 4 49 TE-201 100 200 N2 Gas N2 Main Gas Tank Temp. 44#10 TE-203 100 200 N2 Gas N2 Service Gas Tank Outlet Temp. 44#11 TE-204 300 200 Rod Service Heater #1 Temp. 44#

12 TE-205 300 200 Rod Service Heater #2 Temp. 44#

13 TE-206 100 250 PipeService Heater OutletTemp. DAS 44

14 TE-301 323 5 Pipe Test Section Upper Side Temp. 44#15 TE-302 323 10 Liquid Test Section Lower Side Temp. DAS 44

16 TE-303 100 44 4 Liquid Suppression Tank Temp. 44#

- 58 -

Page 71: Construction of The Two-Phase Critical Flow Test Facility

a 5.6 4^44 4^1 ^

fr«i Tag Name Description Connection Remark

1 TG Injection Gas Temperature DAS

2 TO T/S Entrance Temperature DAS

3 T1 T/S Temperature at 1st Position DAS

4 T2 T/S Temperature at 2nd Position DAS

5 T3 T/S Temperature at 3rd Position DAS

6 T4 T/S Temperature at 4th Position DAS

7 TL T/S Exit Temperature PEC

a 5.7 4# <d^ 4^1

'"--^PCV PCV 201-2 (20A)

PCV 202-3 (25A)

PCV 202-4 (40A)

SObar 10.7mA(11577)

10.6mA(11404)

10.1mA(10540)

60bar 11.6mA(13132)

11.5mA(12960)

11.1mA(12268)

SObar 12.2mA(14169)

12.2mA(14169)

11.6mA(13132)

lOObar 12.8mA(15206)

12.7mA(15033)

12.4mA(14512)

120bar 13.6mA(16588)

13.7mA(16761)

13mA(15552)

- 59 -

Page 72: Construction of The Two-Phase Critical Flow Test Facility

a 5.8 FCV-201 4M^14 FT-202 ^#^4^1 ^^1

FT-202 -W17% 0.11 kg/s

20% 0.15 kg/s

25% 0.19 — 0.2 kg/s

30% 0.23—0.24 kg/s

35% 0.27—0.28 kg/s

40% 0.3-0.32 kg/s

45% 0.36-0.38 kg/s

50% 0.41—0.43 kg/s

55% 0.45 —0.47 kg/s

60% 0.49—0.51 kg/s

65% 0.53 —0.54 kg/s

70% 0.57 —0.59 kg/s

75% 0.62 —0.63 kg/s

78% 0.66 —0.67 kg/s

80% 0.67 kg/s

kl, ~ Isolation #FL 127fl 2.^ Open

- el3)^2 A>d]2. : 3<P- GT-230^f test section2}-a}<^- : gt I20bar il 4| S] til °1 E1 n.

- 60 -

Page 73: Construction of The Two-Phase Critical Flow Test Facility

a 5.9 On/Off #^-4 44^4, ^ S#

NO.TAGNO.

DESCRIPTION all 24 2-1alie#

4#(BAR)

VALVESIZE

ACTION

1 SV-101PV-110 D.W.

INLETATKOMATIC 41840-400 172 1" N.C

2 SV-102 CP-110 INLET ATKOMATIC 41861-400 172 1-1/2" N.C

3 SV-103 CP-110 INLET ATKOMATIC 41861-400 172 1-1/2" N.C

4 SV-104 CP-110 INLET ATKOMATIC 42840-400 172 1" NO

5 SV-105 HX-110 INLET ATKOMATIC JJ-600 10 1" N.C

6 SV-106 CP-110 OUTLET ATKOMATIC 42840-400 172 1" NO

7 SV-107 PV-110 DRAIN SEO-HEUNG - 172 1/2" N.C

8 SV-108CP-110 C.W.L

INLETATKOMATIC JJ-400 5 1/2" N.C

9 SV-201 GB-210 INLET ATKOMATIC JJ-400 10 1/2" N.C

10 SV-205GT-210/220

OUTLETSEO-HEUNG - 220 2" N.C

11 SV-208 GT-230 OUTLET SEO-HEUNG - 220 1" N.C

12 SV-301ST-310 C.W.

INLETATKOMATIC JJ-600 10 1" N.C

a 5.10 44^ 44#M. 44 ^ M ^4

No. Tag name all 2 4 Service DescriptionSize

In Out

1 PSV-101FARRIS

Eng.Pressure Vessel Over Pr. 3/4" 1" 136 bar

2 PSV-201FARRIS

Eng.N2 Tank GT-210/220 Over Pr. 3/4" 1" 210 bar

3 PSV-202FARRIS

Eng.N2 Tank GT-230 Over Pr. 3/4" 1" 210 bar

4 PSV-203FARRIS

Eng.Booster GB-210 Outlet Over Pr. 3/4" 1" 210 bar

* : 27CA23H-S20S4(47l] ^4)

- 61

Page 74: Construction of The Two-Phase Critical Flow Test Facility

4]2^ 4M41#

444## #444# #43#A3 ##3, #4#4# #^44 44

#444 #^4# 3# 4##4^44 44 43# 4 #44- 444, 444##

#44 44#4r4 444, 4444 4 4434, #44 4444A3 #444.

1. 44 s

444# Overview 44, 444 444, ^2]2 444 4—3.5, 4444.

Overview 444 44444 44444 4444 4444 44 4444 344

4 434 44 44(mimic)#4A3 44444. 4 444 444 4444 44

44 43, 44 4 43#4# 44444 PLC #44 44 4444. 444 4

#4 444 PLC, 444 ## 4 44, DAS 44, 4444 4 44444 4#

4# 3# 4#44 444 4444 44. #44 43a# 374DAS#, 4444

4, 4&# #4444)3 #44^A4, #444 44 4#4 # 43# 41444

A3 444^4.

7\. Overview 44

3-4 5.3# #44 Overview 444 #4# 44-44. 4 44# #4#

44 4# 4 44 #4 #3# 44#3 #443, 3 44 444 #44

#A 444:# a#44 #444 44 #4444 #4#4# 44# # 43#

#4444. 4 444 34# 1580xl005mm43, ## #44 #443# 25x

25mm a## 3%}4a 4-4# 4#44 44444. 4 444 #4# 444#

^3# Run(Red), Stop(Green), Fault! YeUow) 3 4-43 #443# 44444.

Overview 444 #4# 4#4 44.

(D 43## 4 4#4#

^334# #4 4343 ^35. ##4# 4344, 4343 f^a, 43

7}3^344 44#4 4 4443 #44# 43 44A3 #444, 4

4A3 #44444. 34, #4#3(PSV)4 443443# #4 434

- 62 -

Page 75: Construction of The Two-Phase Critical Flow Test Facility

#7} 47] 4#4# 44# 44 #4^444-

(2) 44-0-7] 4 444

z# z44 444^7]- #44# 44-0-44 4# 444 4447} 4#4

# 444& 4444, 44#& #4^444.

® zfr/z44 ^44&

44-0-7] 4^4 ###4 444

444 444#& e#4# z#,

#4^444.

® 44 #4# 4#

4#4 44-0-44 444# -0-44# -0-44^ 4 4#44, 44 4-44

4 #4 44 44 44 #4444.

?]e], #a7#4# 44 44-0-4

a. 44 ^44 44 #4

71 ^ 5.3 Overview 44

Overview 444 J5_ L& 444 :444 44 4^444 4444# 444

4: 444 4# 4 #4# 44444.

- 63 -

Page 76: Construction of The Two-Phase Critical Flow Test Facility

- 4^7^43. a4(GT-210/220 Pressure)

- 444 44 afr(HE-110/120/130 Temp)

- <9'^-§-7] 3L<£(PV-110 Pressure)

- 444-4 afr(PV-110 Temp)

- 444-4 44(PV-110 Level)

- aa #^7}a^a 2#(GT-230 Presure)

- #^7}a 44 a4r4 afr(HE-210/220 Temp)

- a 4 o] a 4 E) a^r(Trace Heater Temp)

- g_44 4 °] 4K Boiling Curve) : 44 45.

- 7) air 4 4" (Gamma Densitometer)

4. 4-f^J

^4444 ^444 4^ 444 44-44^ PLC #4, DAS #4,

Isolator, 4M4, a4a 4# 44^ ##4 ^444 44. 44-44 37]^

1800xl200x2100mm 44, 444 4444 Overview #4-& 44444. a4

5.44 Ei44 4444 44a4- 44a# 4444.

Mosaic Graphic Boarc

(1580x1005)

DAS RACK

"C DETAIL

DETAIL

a 4 5.4 Bin]4 444 44a 4 44a

- 64 -

Page 77: Construction of The Two-Phase Critical Flow Test Facility

4. 444 v]|

444 4444 444 4444(DAS)T4, 3^3 7]&

& 4^g 44% &4471- %4% 44^ T#444A3. 44444. 4^a ^

44% 4444 4^44# 4444 4444 4" 4% 44 44%44# 444

^4. 44% 44 44%44# 4444 444 ^ 7]7]7} 44%4.

- Mam Heater Stop(HE-110/120/130 Stop)

- N2 Gas Heater Stop(HE-210/220 Stop)

- N2 Gas Supply Valve Close!SV-205 Close)

- N2 Gas Tank Edet Valve Close(SV-203/206 Close)

- Tracing Heater Stop(HE-230/240, HE-10 Stop)

- Main Pump Stop!CP-110 Stop)

^444 7M4 44^4 %44 4%% 44 444 4340]^^. 4^ 4444

44 4^-4 PLC# 444 %3, 44# 4444 m %4. 44% 4%a 4

4% 3.4 5.54 44.

34 5.5

- 65 -

Page 78: Construction of The Two-Phase Critical Flow Test Facility

2. PLC 1414

PLC# 114 Ills# 4433 14#43, 1114 #1! 131 3

# 44# 4414. PLC# #11 1KMMD4 141 1#44 444# 1144 43, 114 114 ##4#4# 434443 1144 14. PLC4

Is 14# 4#4 #4.

CD 14441 3#PLC! 1434# #147] 41 3#3 MMI 4#E]! 144! Ol

3, PLC4 1# #l(ProfiBus-DP)# #4 1144.® #11 ll(MMI) #4

1114# #147] 31% 1133 MMI 1#4! #44! %3, ^1

#44 4444 £D 4444 4444 44 PLC4 CPU fit4 4

144.(3) Overview 44

14444 4444# 441444 4444 4444## 4 444 5 444 fi-4 44 e]4 PLCl 4-133 4 444 #43#4 4144.

(4) 44

414 #413:4 PLC4 4-133 H3#4 44 1144.

® 444114 144 13, #3, 44 #4 4#4# PLC4 #43#4 41

4144.

7}. PLC 43!] 4 41

PLC# 4!#(SIEMENS)44 S7 3#3 3.4 5.64 14 441 4#1

D Panel! 1444 4#4, CPU 3#, 4133 4/#4 3#, 441 !/#! 3

#, 343 #13#3 4144 44. 3^ 5.71 144 4# PLC4 41# 44

14. 34 5.711 PLC #11 14 143S CPU 31, CMM 3#, 343 I/M

314 1444 44. CPU 311 11144 14#4# 1144, CMM 3#

# 1#44 441 #1# 4414. 343 i/M 3## 44 !/#4 3#4 1

44 plc4 144# 4144 41 3144. 5. 5.111 4/14 3#4 41#

4414. #1! Overview# PLC(PLC#5-#7)# 1114! 144 4114 1

1 14# #144 41 441 #4 4 4133 #43## 1143 44. 4

- 66 -

Page 79: Construction of The Two-Phase Critical Flow Test Facility

# < <>F mjrPi TT •0 PiW'# o|j

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WT

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DUCT 100*80

3.^ 5

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Page 80: Construction of The Two-Phase Critical Flow Test Facility

OVERVIEW 1

PLC#1

PLC#2

PLC#3

PLC#4

TO ETHERNET

PLC#5

OVERVIEW 2

PLC#6

OVERVIEW 3

PLC#7

NO. NAME DESCRIPTION MODEL Q'TY

1 CPU CPU& PROFIBUS INTERFACE CPU-414-2DP 1

2 CMM TCP/IP ETHERNET MODULE CP 443-1 1

3 PWR POWER SUPPLY MODULE PS-307-1K 6

4 I/M INTERFACE MODULE IM 460 1

5 I/M INTERFACE MODULE IM 361 6

6 RACK MAUNTING RACK (9 SLOT) UR 2 1

7 RACK DIN RAIL (530mm) RAIL 6

8 D/I DISCRETE INPUT MODULE SM 321 D/I 5

9 D/O DISCRETE OUTPUT MODULE SM 332 D/O 8

10 A/I ANALOG INPUT MODULE SM 331 A/I 6

11 A/O ANALOG OUTPUT MODULE SM 331 A/O 17

3.^ 5.7 PLM

5 5.11 PLC

Trw Overview-#- ^ Total

DI 5 0 5

DO 2 6 8

AI 4 0 4

AO 4 13 17

68

Page 81: Construction of The Two-Phase Critical Flow Test Facility

4. CPU 2-4

CPU 2-44 1/#1 2-4 4 442-44 4444 44411 11141

4 44444 #^41. 444 CPU 2.44 444 444 44.

- 4# : S7 CPU414-2DP

- 44

- 32bit 80386EX

• I/O Discrete Point : 65536

• I/O Analog Words : 4096

• Memory : 128Kb

• Execution Times : Bit/Word/Fixed Point : O.lus

Floating Point Operation : 0.6-s

• ET200M DP Interface Module & RS-485 Bus Connector Including

4. 4444 14 44

4444 144## 411 4444# 21447] 44 444 4114

44 44 a]4 4 DAS4 Ifrl# 444 44 #5] 71 (Isolator)# 7] 4 l~5Vdc

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444 4144. 44, 4144 444## 444 441 114 44447]4

44# 44441 #4 4441. 1144 11411 4Till 4# 44#

differential type# 444# 44 #14 14111. 1144 H

4#1 11=4 111 11.

- 4# : SM 331

- 41

• 8pt/Module

• 12bit Resolution

• Input Type

- 69 -

Page 82: Construction of The Two-Phase Critical Flow Test Facility

- 4-20mA/25O 1-5V/100K0, ilOV/lOOK"

- T/C Type E, N, J, K/10M9

- PtlOO Standard/IOMQ

• Accuracy : ±1% °] 4

• Sampling Time : 20ms

• Isolation Tested at 500Vdc

4. 44#A #4 A#

44AA #4A## ti] Si] Xt] 4 «J] ^AA 4#44 xtl^AjJr

# #444 2.^4 Overview 444 444 4 /]A 4A# #444 #

444 #444 $14. 4 4 44# t4}r A## differential type AS, 44 44

A4, 4~20mA 4444# #444. A# 4 Overview 444 444 444# #

44# 4 A# single-ended type A A #4 44 A#, l~5Vdc 4 44 #4 44. 4

4S.A #4A#4 444 444 44.

- A# : SM 332

- 44

• 4pt/Module

• 12bit Resolution!libit + sign)

• Input Type

- 4-20mA/25O 1-5V/100K0, ±10V/100KO

• Accuracy : ±0.5% °14

• Conversion Time per Channel : 0.8ms

• Isolation Tested at 500Vdc

4. 444 4/#4

444 44 fi44 4 44 4444 4444# 444a, 444 #4

fitt 44# 44444 444 #444. 44444 s#/s4aa #44 4 4

- 70 -

Page 83: Construction of The Two-Phase Critical Flow Test Facility

3-4 ^444 4^4 £ #4£44 44 #4 7144 ##47} 44 e 4

#4 4## #£ #4-. 44# 4444 44 4 44# 4##4# 44# #4

£## 444 ###z. # ^# 444 4##44- ##44 44, ##£44 #

## 444# 4#4£# #4444-. £#, 44# #4s## Overview ##4

4^4- ^^514 #44-44 4-4# a###. 44# #/## £#4 44# 4-#

4 #4.

- £# : SM 32KD/I Module), SM 322(D/0 Module)

- 44

• 16pt/Module

• Optocoupler Isoaltion

• Input & Output Voltage : 24Vdc

3. 4M&4 #41##444 #4££# 4444 4 ###a ^4 ##, ## 4£ # 4#

4 £#44 44 7>4##, ####, 44/444 44 ##2.££ 44444. 4# 4 ##&£# ##44 4# ##£ 4 4 4 £4# #444PLC4 44444.

7}. #44-4 # 4r4#4

4a&44 #£7}£# #44£, ##-§-4 # 444 44-## 4444 44 ##£££ 44444 #4# ## 4 44#4 #£ 4444

44 4-#££ 44#£# 44444. nV& 44£4# #&4 #4.

Q 7}£4£44 #44^ #£(SV-202) 4#- #4#4 ####(SV-201) Open# 7}£ 4^ ?H#

- #4#4 ####(sv-20i)4 #44^ #£(sv-202)# 4## 4 ##4 4 7)14 ##7> Open sir 7/ 44

® 7}£ ####(SV-203/206) 4#

- 7}£4a GT-210/2204 4# ^4 7}£ ####(SV-203)# 4#

#4 GT-201/2204 #44 #444 #4# 44 4#L# #44#

- 71

Page 84: Construction of The Two-Phase Critical Flow Test Facility

4#aa SV-203 Close

- 7}a^a GT-2304 44 44 4# 44#a(SV-206)# 4#

44 GT-2304 444 #444 444 44 4M #444 x}

#aa SV-206 Close

® ^#(Vent) #a(SV-204/207) 4#

- 4^7l-a^a(GT-210/220)4 44 °1 a 4 4 4 (high trip setpoint) 4 a444 SV-204 4# Open 4 4^.4^

- 4a7}a^a(GT-230)4 44 4 a 4 4 4 (high trip setpoint)4 a 444 SV-207 4# Open 4 4# M

® 4444 44# 4# 44 44#a(SV-l0l) 4#- 44-0-444 444 4444 444 444 a444, sv-101

4 Close

- SV-101 Open 4 444-4 444 #a(SV-105) 4-# Open

4. 4-4 44

444 44-0-4 44## 44#a44 444a, ^44 4ay}a^a

(GT-210/220)# 4-0-44 44-0-44 44# 444444 4444 #4aa44-_ 4 #4aa^7i# ^^a/} 444a# 4a, 444 50C44 4444

4a# 44^4# #4444.

CD 44 4a(CP-llO) 4#

- 44-0-4 ##4 #a(SV-102/103/104) # SV-104 #a Open4 cp-iio 4#

- cp-iio 4#4 4a 44# 44#a(sv-i06) Open

® 44 44(HE-110/120/130) 4#- 44 4a(CP-ll0) 4#444 44 44(HE-ll0/l20/l30) 4#

- 44 44 4#4 44-0-4 4## #a(SV-l05) Open

® 44-0-4 #a44- 44-0-44 44## 44#a44 ##444 44 44 44

(HE-110/120/130) PID 4#4 4- MMI 44 444-444 44-0-4 4# target #a# 444a,

Cascade Modea 4444, HE-110/120 44# 444 50 °C 7}#&

a 4#44

- 72 -

Page 85: Construction of The Two-Phase Critical Flow Test Facility

- 44 HE-1304- #2 41## #4

- PID# 444 s]Ei x>^x^ a] 444^ MMI 44 41#:### 5A]

4 T/C Spool Piece# #44# #4# T/C 4 #4# Plant

Value(PV)& 4-0-

- 7}#4 ### 44^# ### 4f 4^. #4

® #4 #7] #47j]#- #4-0-7] #4# #4 #444 ##47] 4# #^7M:

(SV-205)# #4-0-7] #4# #4-0-7] #4 #4# &4# 44SV-205 7}^ Close

- #4-0-7] 44 44# 4# #444 444 44 % &4# 44 4^7]-^: ###g_(PCV-101) 7}^ 0pen4z, 444 g_4 5bar #4

g. #### 4^ close

(5) 4^7]-^ ^4 #44 #4 A]^^ ^-^.4 4^7]-^ 44 # 444 m

^]44 4#(HE-230/240/310) 7}^ 4^ 44

4. 44 #4

44444 44-0-44 4^4 #44 #4^4# ^#4 4444 44

4 4#4&4 444 4^# 4444z, #4-0-4 44 # #4# #4# 444

4 #4-0-4# 4444 4 44###4(QOV-30D# 7]] 4-## ####4 4^4

4. 44, #4-0-44 #4# 447]-^ 7]-## ## #4^44 #44& #44#

##. s#, 444& #47]-^# 4### # 444 ##^44& 447}4 4#

-& #444 #7]®]]# 4:4.

Q 44###4(QOV-301) 44

- ###44 z#/z#4 4447]- #4-0-4# 444 4447]-# 4# #444 44 #444 #4# #4-0-4 4# 4# ##44 7]^o_g.

QOV-301 Close

- 444 4#4#44 Radar 4#4#4(LT-102)

® 447}4 ###^_(SV-205) 44

- ###44 #4^-4 #d:7]-4 4## #444 44 444# #4#

4447] #4^.4 ##44 7}^o_g. SV-205 Close

- SV-205# 44 #44:4 QOV-301 ^_4 # 20cm #4 #4

- 73 -

Page 86: Construction of The Two-Phase Critical Flow Test Facility

® ## 44 444 4#- #44 #444 4444 44# #444, SV-205 !H4 QOV-301

4#.4 44 Open

® 4444 4444- 44^44 44 #444 PCV HMPCV-201-1/2/3/4) # #4# 4

444, 444 14.# 444 444 44 4# 4444- 44, 4444# 4# Plant Value(PV)# 44#4 44 44 4#

(5) ##4^ #444- 4#^44 44 #444 #4 #44# 4444 FCV 14.# #4

4 #44 44 4# #444- 44, #444# 4# Plant Value(PV)# FCV #4 #4^^ 44#

4#

4. 4#/444 14#4

4# # #4#44 2#/z# 44# ##/14##& #444 4# #

4#& #444# ##4 444 #44 #a#4# ##44 #4 ##44& #

44444, #444# 4# &4# 4142, 44 #444 ##4^4 444.

444, 4# #4# ##4^ 4#14.# 4444 #4#44 44# 444 #

4#4 44 Close# #44#!4_# Open44 14## 444 4#44.

4. ### 4444 #4

#4# 44# MMI 4444 #444 4#4, 444# #4 PLC44 44

4 2# #4444# 4#42, #444 422# 4#2# #4 244 44#

PLC2 4444 44 144 4# ## 4## 44.

4. MMI ###14 4#

MMI #s#14# #44 44# #44# 2## MMI 4444 #4

44 44. 4 2## ###4 4 #4224 4# #444# ##42, #44#

##4 44# #4 ##44# 2441 44. 444, #444 444 ### 4

442%} 4 4## MMI #221444 2 44# #44 # 4# #1444

- 74 -

Page 87: Construction of The Two-Phase Critical Flow Test Facility

44.

a. 7}#4 MMI ##W4]4# #44 PLC4 7}4 # W#4# ##

W°l]4 4 Wonder Ware4-4 InTouch 2## 4# 4 4 4. 4 ##W°ll 4 4 44#

4#4 #4.

- £| : InTouch Version 7.1(Wonder Ware 4)

- 44

• 5000 Tags, Development

• Siemens DDE I/O Servers

• Networking 4 4

• ODBC Driver

• Real Time Trending

• Multi Pen Trending

• Historical Alarm

• Reports 4 4

• Tag Database

4. #44 44

MMI ##w44# 4444 444 444 444 44 4444, 44

44 4 4#^a #4 4444, 4-# 4 4-4 4444, 44 4444 ##w a

4 444 44444. 5.4 444 44444 44 4 444444 44 44#

4444 44 AW zl 7) 7)4 44 44 44444 4442# 44444. #4,

#444 44# 44 ## #4 444# Trend 444 444A# 4^4.

5.84 444 44 4444# 444a, 24 5.94 444 Trend 44# 444

4.

2.4 #444# 4#4 44# 4#44 444 #444 #4# 4#44 ^2

4 444^#4, ## 44 444 444# #444 #4 44# # 42# 4

4 Overview 444 #44 #4444. 444 #44# 2# 444#

## #44 44# 4#4a, 2# 4## 0.5& 444 updated# 444^4.

- 75 -

Page 88: Construction of The Two-Phase Critical Flow Test Facility

444 444 444- 444 ^-444 4#4 44.

(D 44144 4 4444

44444 4^# 4444 #4 441# #44# 444 # a###

444 #4 "9-4% 44## 44 4# 4.

- 44 44

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(2) Alarm 44

7] 7]S] 24 4 Alarm List# #44# 44

(3) Event 44

7] 7] ^4 4% ^ 444m m4 4 Event List# #444 44

(4) System Configuration 44

44 4## 4 #4## a44% 44## PLC 4 I/O Server4 44,

Network 44# 44% m 4# 44

(5) Large Historical Trend 44

444 Trend4 44 4 Range 4# 4%444 4444 444 4#

4444 44# 44% m 4# 44

(6) Small Historical Trend 44 :

4444 #4 Pop up44 Trend# #44 #4% m 4# 44

(7) Instrument 44 44 :

%#444 a#% ## AI Module#, #4## 44% m %# 44

- 76 -

Page 89: Construction of The Two-Phase Critical Flow Test Facility

~ir\*

flKobuAB

3.^ 5.8 f

5.9 Trend

77

Page 90: Construction of The Two-Phase Critical Flow Test Facility

43^ DAS

#4# #H4(DAS)# 4^ 1 4^44# #44/1 4# 4^14 4^ 4# 414 #4 1# 4*141- 4 4 422 #444.

Q 44171- #2 : TE-113- 44 : PT-102- 44 : LT-101/102

(2) 44#- 2-4 4444 : PO ~ PLCL8#)- 2,4 4444 : TGI ~ T4(7#)

- 44 : FT-301 ® 44/1-4 #44*1

- #2 : TE-206

- 44 : FT-202- 44 : PT-205

DAS4 42#^ *1# 44# 40ms 4#2 4442# 44144 444, 4!

X} #444 4# *1 44:1 4144 4 44# 441444. DAS# PLC# #!

42- 41-s]# 44, 44, 44#44 4s# 4s#44! 1# 4-20mA 4#4 s2 44 4 444.

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1. DAS 44 44

DAS# 444444 444 4*141 44422 #444 4444 444

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DAS# DAS! ^14, 7H4! 252414 2#(LabView), DAS 44 (VXD, #

4! 2#(Excel) 122 #444.

- 78 -

Page 91: Construction of The Two-Phase Critical Flow Test Facility

DAS 4444 40]Ei 44 44&Z1 44^ °^st, T/C

44&#4 ^444 4^-4, DAS 4m44 4#471 4% 4444^ 4^4 ^

444 44. ^1 444 44^r 444 #4.

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- Flexframe VXI-1200 Universal Europe 240V

• High-Performance flexible VXI/VME Mainframe

• 9 Slots

- VXI-PCI8015 Interface Kit for windows-based PCI PCs

- VXI-MIO-64E-1 & Software

• VXI Multifunction Input/Output module with Analog, Digital, and

Timer/Counter Capabilities

• 1.25MS/s Sampling Time

• Channel Independent Programmable Gain

• High Speed VXI Direct memory access transfer

- SCXI-1356 Shield cable assembly

- SCXI-1001, 12 Slot Chassis

- SCXI-1100, 32Ch. Multiplexer Amp.

- SCXI-1102, 32Ch. T/C Amp.

- SCXI-1162, 32Ch. Optically Isolated Digital Input

DAS 444U DAS 4444 444 4444 44 44 4% 4441442 v}a

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4^4 TSU444 444 444 #4.

- S-4 : LabView Full Development

- 44

• Controls & Indication

- 79 -

Page 92: Construction of The Two-Phase Critical Flow Test Facility

• File I/O 4 4

• Open Connectivity

- 444 4#

• 44 44 4-4^ 44 4 #4

• Signal Conditioning

• Triggering/Timing

• Digital Pattern Generation

• Digital Handshaking

• Edge Detection

• Period & Pulse width Measurement

- Programming Structure

• While & for loops

• Case structure

• Sequential structure

2. DAS 4-M

LabView# 4444 444 444 444 44 44, 4444,

D.4Z Trend &444Ag. #44M.

4. 444 4444

M 5.104 444 44444 4444. 4 444 DAS 44 44ks

44444 4 444 4# 444# 444 # 44. 4 444 "Data

Logging" 44# #4M, "34# 444# 4444 444 444 4444.

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444 444 #&44. 444# 444 4# z4#4 44 444 4444#

1,680&(28#)A& 4 MM.

- 80 -

Page 93: Construction of The Two-Phase Critical Flow Test Facility

fcr ■ a -3 ■ 1 r ■ - I I 1.31

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- 81

Page 94: Construction of The Two-Phase Critical Flow Test Facility

#44 4 ^ Gain4 offset^] 4444 44. 44# ^4# 4# 4^4 ^^14

#4# ^4444 ^444 444# 44# 4" %31, 444 #4# 4^44#

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4.

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- 82 -

Page 95: Construction of The Two-Phase Critical Flow Test Facility

^ 5.12 DAS Trend

83

Page 96: Construction of The Two-Phase Critical Flow Test Facility

*i|6^ *P| 74|#

4]1^ ^

i. 44

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442 44.

200 AF ACCB

ServiceMCCB or MC

VWF or SCR

Pump Motor Heater440 V, SPhase

ControllerSensor220V, 1-Phase, 110V, 1- Phase

Engineering Sliding (440 V, SPhase)

1200 AF ACB

S3 33 S! Pump, Heater S Panel

24 6.1 ## 44 4 44 44^

4444 4 444 4-0- 44# 4#4 44.

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4144 440V

#444 44

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- 84 -

Page 97: Construction of The Two-Phase Critical Flow Test Facility

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Page 98: Construction of The Two-Phase Critical Flow Test Facility

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Page 99: Construction of The Two-Phase Critical Flow Test Facility

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Page 100: Construction of The Two-Phase Critical Flow Test Facility

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Page 104: Construction of The Two-Phase Critical Flow Test Facility

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- 92 -

Page 105: Construction of The Two-Phase Critical Flow Test Facility

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- 93 -

Page 106: Construction of The Two-Phase Critical Flow Test Facility

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- 94 -

Page 107: Construction of The Two-Phase Critical Flow Test Facility

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- 95 -

Page 108: Construction of The Two-Phase Critical Flow Test Facility

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- 96 -

Page 109: Construction of The Two-Phase Critical Flow Test Facility

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Page 110: Construction of The Two-Phase Critical Flow Test Facility

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- 98 -

Page 111: Construction of The Two-Phase Critical Flow Test Facility

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- 99 -

Page 112: Construction of The Two-Phase Critical Flow Test Facility

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- 100 -

Page 113: Construction of The Two-Phase Critical Flow Test Facility

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- 101

Page 114: Construction of The Two-Phase Critical Flow Test Facility

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- 102 -

Page 115: Construction of The Two-Phase Critical Flow Test Facility

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- 103 -

Page 116: Construction of The Two-Phase Critical Flow Test Facility

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- 104 -

Page 117: Construction of The Two-Phase Critical Flow Test Facility

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24 444 4#471- 4444 #42#4 #44# 444# 444 #4# # %2# 44

/444%#4, 444 4^4 44# 442 4#44 # 44.

444 #24# 4#44# 24 7.14 444 44 44 4 44 3144 44 42, 3. 4

4 ##44# 4# #47]- #4 ^4 s)]^2 44 4#-#4-_ 4#4# ^4 244

Aluminium Profile 44 444 44# 44 #444 #4 4 44# 444 ##4 44

244 4444 #4# 4#44

4]34 444^^41^1

1. 444 4 #4 4 4244Oscilloscope# 4 #4 4 2#4# #4 4#71, Preamplifier 4 Amplifier/TSCA4

#4427]- 4444 444# 4# 4444.4 PMT4 negative pulse4 4444#

250ns #242, 42 4 2424 47]- 4# ##4^4. 4^4 Nal(Tl) 4 PMT7]- 4#4

22 4#44# 4# 44# # %1#4

NIM bin module^ MCA(ULS1202)# 4#44 Counter2#4 2# #2# 4# #42

#4 #2444471- 4 4#42 %## 444^4

24 7.9# MCA# 4#4 4# 4 4 4244 #444 Preampliher4 44# 100 pF,

2##### 0.83 kV, Amplifier4 Fine Gain# 8th, Coarse Gain# 50, Output# Binary

Positive output444 24 7.94 #4# 4# 4-# 4)^44 #^444 #4#^ #4#4

4 4*4 34# 24# 4##-, 444 424# 4#4 4# #24 444# 44# # 4

4. 4# 444 44444 ## Count ## Noise°ll 4# 4### Counter# 4## 4#

4-44-4 4# #244-.

2# #4 #4 ##4 4# 4444244 424## 4#4#4. 24 7.10# 444 4

# #4 #4 4#4 4# 4244-4 #434# 24#4-. 100& #44 # Count ## 4

- 105 -

Page 118: Construction of The Two-Phase Critical Flow Test Facility

MCA sample signal

* -4#- PMT HV PS: 0.83RV- Fine Gain: 8th- Coarse Gain: 50- Pos/Neg: Positive -Uni/Bi: Bi- Int/Window: Int- Output: AMP output- Dectector: 1000mm apart

0 500 1000 1500 2000

7.9 MCA* <>]-§-% ^4

Without Pipe

Pipe without Water

Pipe with Water

0 500 1000 1500 2000

^ 7.10 4^4 4* {12444

- 106 -

Page 119: Construction of The Two-Phase Critical Flow Test Facility

4^?]- ##4 2536834, 44^4 %# ##(?]##- 1)4 1967428, 44^ 44] #4

44 4 44 ##(?]## - 0)4] 17786104%4. #4 #7)] ##(void fraction-0 S4 1)4]

4# 444 #^4# 4##(count rate) 44^-44 444 #^4?]- 4##4 444^-] 4-

#44# 4* 4#4%4.

2. 444 #^44 a# #4

444 #^44 a## 4# SUS 4 #444# plate4 phantom# 444 444%

4 4, #4?]- Z]-Z]- 2, 4, 8, 12, 16mm# SUS 4 #444# plate?]- 244 444%^4

flow regime!4 ##: core flow, annular flow, slug flow, bubbly flow)4 2-4# #4 10,

30, 50, 70, 90%4 &44# #444# phantom^] 444%4. & 7.3# ?]^#

2© #444# phantom4 44# #4#s 44

5. 7.3 7]a# 2.4 #44## phantom# 44

Voidfraction

Core flow (Pipe)

Annular flow (Annulus)

Slug flow (Arc)

Bubbly flow (Bubble)o o © /o^o\

Dia. (mm) ID (mm) Height (mm) No. of Holes

0.1 3.45 10.34 1.81 0.101 (3 4)

0.3 5.97 9.12 3.71 0.303 (9 4)

0.5 7.71 7.71 5.45 0.505 (15 4)

0.7 9.12 5.97 7.19 -

0.9 10.34 3.45 9.09 -

ti]2 - OD-10.9 mm OD-10.9 mm Hole dia: 2 mm

44 SUS plate# #44## plate4 #4444 4# 44# ##44 4##(count

rate) 445.#B] #44 44 calibration# #2#, 44# # 2.5] phantom# 4

#44 4#4 4#4 44 flow regime4 44 444 #^44 ^4# ### 4444

- 107 -

Page 120: Construction of The Two-Phase Critical Flow Test Facility

4]4^

### #^4# 4-0-44 4^4 444 4### 4444 4444 #^4 4444 #

_&44. 4## 444 4444 7#^# 3.# 7.114 #2, 44 7#^# 3.# 7.3* #2#

4 44.

444 444 44 4 ### #444 44 4444 ###4 444 ##4-^#

#44 4#4 444 4-0-4-##. 4444 444 I000mm4^, 444 10.9 mm4^, #41

71- 3.2mm# 3/8 44 Sch. 80 SUS-304 44## 44444.

444 4^4-0- 4444 44# 44# #44 4^4 44 444444, #44 #Ag.

44 41-1 # 44. 4# 4444 444 44444 444# 4444 44 spring

hanger# torsion bar7\ 44444.

444# 4444 44444 44-0-4 444 4444 44#^ 4 44444 #44#

##44 4## 4## 4### 44# # ## 444^ #4# # #^4

#7ji 44-4%#. #44# #4^4# #4-n-4#^44# #4-0-4 #4^4# #4

!7.2MPa, 4^ 353 °cg. 44 4## ### #4# # ## #444^ ^#3- 4#4#4.

##44# ##^ ##444 4### #4 4444 #4# # #2, 4#4 #4#4#

#&# f #^4 44-4%#. i#4 4-44 #4# 4^4 #-#4# 4#4 4# ###4

444 :&### #44# -0-####-# 4#4 #444# 4# ###4 444 ## 4#4

Sch. 160 SUS 44## 4-0-###. 4444 4# 7>#4 3.43.4-4 4# ### 444

444-s.g. 444 441# 4-^# #4 #4 #44# 4-0-44 444(Spring

hanger, Tension bar #)# #44#—4, ##714 ## #44 ### #4444. 4

44# #4 # 4# 444 #44 #4 4## #4# 4# 4## #4444 #4 # 4 #, 4#4 #471- 4l#/#44#4-.

- 108 -

Page 121: Construction of The Two-Phase Critical Flow Test Facility

Inlet

Torsion Bars (4EA)

Inlet Head Outlet

Test SectionFlange

7.11 4^-8- 4^4^ 7#^

- 109 -

Page 122: Construction of The Two-Phase Critical Flow Test Facility

^18^- ^1^7}

411^ ifl-g-

###7l-3 #4## 44 #444# #37}3 ##4## #3

7}3 Tank Lorry### #37}3# ##4^}- 43 Gas Booster# 0l-o-44 7}#-#

4 437}3^-#^a4 ^444# 44 44# 44 437}3#l3 443 4^-4

4 a.#-7l-3444#4 4^^ 433 4 64 3# 453 4 34# #44 444

ff#7}^#:###-# 7)4444 43. 4444 44 4 4444# til444 43

44 3# 444 444 4344 4444 34 444s# 444 4444 4

44 #4 #44 #444 ^ 44 4# 4&4 44 44# 444344#43

44 44 444# 4## 44 44.

4]24| oia]7} ^ ^

###71-3 444# 444# 4# 44444 437}3 ##4## 44

437I-343 443 #444 34-7}3444## 44131 433 4 6# 3# 45

3 4 344 #44 44- 4#7}344#43#4 44/}# #3# #44#-. 44

/} 444 44 #371-343 44 447}# 44 #4 ^ 44# #-##- 4#-.

(1) 44 4471 ^ 7i##s4 44:(7}) A}^^^Al: #4#4 §1 7^

(4-) 7i##s4: #444 # 4#4 44 spec. #4 # 44

0 444434 4 444 4 44#7]/safety relief valve#

4#4 444# components# spec.# 34

0 3.471-3 4444- 4# nl 44

0 4-44444444-4(4# ^ 434 44# 3#)

(2) 4# 4s 44 ^ 44: 4#7l-34##7i. #4##-## 4#

(3) 4-444-: 4444 44 43 #4.^ 4.444. 4^

- 110 -

Page 123: Construction of The Two-Phase Critical Flow Test Facility

Ill -

k lok "Sk #k Is jo & I.Y 9?k-yk?k kirk

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to (k kk{b)k kkk{o ?kk is ( k tb kk kHyg-k-tbEkkk BIT &A k{y k

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to tb kkr toikltk -zrHk tg tsktbgbEk’-tbir ta-glbi? kbr Iy# {srS {afo{a "Sir EAET-0Z9 k tb IftfltYbr "kir to k-kgr k tb {yg- kbbEk-kk {a k 3 k#k k klrk -lnk 3Fk’-fbir ^bLZ &T t°{S"a{s it#{Y{b"ff kk {a |b tb k kin #

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^k#k?k?k kkk #kkk &ty ^tk?k?# to&tk-grg- ?k?k

-k#: kSk

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k^k -e-Ly Ink :§?Ly kk kk (6)

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kk#k kkkk k{yk kk k{skk Hsk #kttR (k)

kg- kkk kkktb tbkk #"Ek-kk (k)

kg- to tb{y kTo k k

k k k {btb k gi lb k k k l<?k~sk kkk kkk k:K tnk-?k (k)

{Yk (8)g-k tnk kk tbk (L)

kkk tbk kkkk :-r*stkk kkk ■s?k -yk-tb^- (9)

kkk &k kkkk :kk kkk ^k ?kknr (9)

kw kkkkktb {Ygrkk?kk% :w& #k ^ sk ^k#k m

Page 124: Construction of The Two-Phase Critical Flow Test Facility

9^

1. SMART-SA-TR550-00

2.. "y]-g-47}^ 4^^ SMir# SMART-TE-RR830-00, Rev.O, 1999.12

2.. iHif, SMART-TE-RR830-01, Rev.O, 2000.3

- 112 -

Page 125: Construction of The Two-Phase Critical Flow Test Facility

if #

- 113 -

Page 126: Construction of The Two-Phase Critical Flow Test Facility

■ifs. x-i N'2 Gas Flowmeter (FT-202)

HOFFER FLOW CONTROLS, INC.%We Turbine Flowmeter Company™

1 Of 1

*TEST CERTIFICATE* *

CUSTOMER: HARA CONTROL TECH. CO., LTD,________

CWTQNBR ACCOUNT NOmBRx 3981 ________________________ JOB * 32863

MHtCRABE ORDER; OOA133 DATE* 01/23/01

TURBINS FLCAQWIER) HQ1X1"30-B*1 (RPR51S) -F25CS-CB

MtlAL NUMBERj 91S44

DIGITAL MOW RATS INDICATOR; WIT-2-3-B-CE-X

S2&IAL MOWER; 122980

oxmmcTORt MaiiofA-iosL-as o pirn

ANALOG OUTPUT^ .

PULSE OUTPUT^ .

pwnam iwur; EXTBRmu, pows* io 30 voc

MANtAL: YES:__________________________________________________________________

TOTAL DISPLAY: XXKXKXX KILOGRAMS RATE DISPLAY; %X3XX KG/BSC

MOTES) 1. SERVICE NITROGEN # ?S DEG. C. TO 100 DBG. C., G 12D TO 230 BAR G, CALIBRATED OK W&TB& * 1 CSTK WITH X CALCULATED GAS ~X* FACTOR FOR UBS OVER A FLOW RANGE OF .11 TO 12.59 ACFM (D.013 TO 0.5? ZG/6ECK

PACKING YNSPSCTION: _________ _ MEAL IKSPBCTIOM;

DATE;__________________________

WE CERTIFY TEAT ALL TEST a@UEPMB*r UE«) 3# TEE PERFORMANCE Of %SE TESTING AMD SETUP ARE ACCURATE AND TRACEABLE TO E.I.8.T, WE CERTIFY THAT OCR QUALITY ASSURANCE SYSTEM IE CBkTIFTED TO ISO 9001,

qz/aa/i 9%)

Page 127: Construction of The Two-Phase Critical Flow Test Facility

s, i_i N2 Gas Flowmeter (FT-202) S^x]-S.(?]] G)

H HOFFER FLOW CONTROLS, INC» The Turbine Flowmeter Company™

m mt «*»* t»at * p.q &*2Pts * aw** owe* swowres_ »-<W-S5»«<$54 • p$3) 331-199? » FXX ($■«?> 33f «S

ECtUIPMENT APPLICATION SHEET

Customer: AT D,________ Date: a if- a i

Purchase Order: GjjAi3l3__________ _______ Job No,: _________ _

Preduct: /v/r*.a&g<U How Renga: . at/a to . 6 7

Temp. Range: ______ to ___________ Pressure Range: to ____________

Flowmeter: AkrKr_ao-a/(APRfrA-Pa«S'-&c S/N: 9/jn/V___________Plow Range: ■r',9tr: to ^oa<|Sr CaPm * KT-actor: % 3 s 9F K^^,y,r.c.o a)

Electronics Model; yVr.Z-'"yLz.ty-3~C.fF ~£........................S/,N: c ........

Input Pwr.: ______ _________ Fuse: ______ ,,... Output Pwr.: _________

Dwg. Numbcr(s): _____________________ _________________________ ______ ______

K-Factor of Metering System: ./#g9^R»va,TFIMaxI- .t uL&2_^a/6^=_ QMwt Preq.

S.F.:

Flow Rate Units:

Pulse Output:

S.F. Mwpl: _ Totalizer Units:

Range Select:

Duration: ___

Dec. Pea __

Pulse Scaling:

Pulse Output K'Factor.

Analog Span: ________

Time Base:

to

Low Alarm Setpoint:

Pressure Span: ______ to

Hi Alarm Set Point: ________

Pressure Excitation: .........................

Pressure Range; /So to Full Scale Pressure: 3 f‘S\p<

Temperature Excitation; __ _______Temperature Span: ______ to ......... ______

Temperature Range; __2S"_ to , FuU Scale Temperature: A

Pipe Diameter; ________ _ Inner Diameters ... ..............-Schedules .... .............

positioning: Centerline ...... Critical __ _ Insertion Depth __....... ........_

Obstruction Factor: ____________ Pmhle F#ctor(C*ntetlin*l _________

- 115 -

Page 128: Construction of The Two-Phase Critical Flow Test Facility

jfs. 1-1 N2 Gas Flowmeter (FT-202)

H HOFFER FLOW CONTROLSf INCThe Turbine Flowmeter Cmnpmnym

Mw* taa**e.a 8o%2M5 ^ NO# CmmW ****##33M W " FAX #9p

CALIBRATION DATA SHBKT

)DBL #: HD1K1 30.B-l(RPR51S)F3SCa-CE

PAGE I

U#A CONTROL TECH. CD., LTD. m#: ACC%3UNTS PAYABLE mWG BONO B/D, 100-16 tEONO DAM DONG 43K% NAM-OU. SEC'JL*3REA

JCOUMT NUMBER: 3961JRCHASB ORDER: 00A133

JOB NUMBER: 3365 3

SERIAL NUMBER; TEAT RAMOS i TEST STAND: TEST FLUID;

COIL TYPE* DATS)

91S443.991 CO 60.081 QPM 1ARater at 20C Degree* RP-R.-5 -1 »-S min 0.003/30/91

MV

METER FREQUENCY

# (HZ)

MBTBt FLOW RATE (GAL/MIN)

METER K FACTOR

(P/GAL )FREQUENCYVISCOSITY

(HZ/CTS)1 61 ,98a 62 .043 109,.674 154 ..595 231 ,54.6 390 .367 542,,36"8 701. 439 779..*0

10 852 9611 926 $612 9241 ,85

3.991 931.*000 61.533.995 931.8000 61,6%7.072 930.5000 109.469. 992 928.3000 154,2914.972 927.9000 231.08

25.286 926.2000 389.5935.176 925.1000 541.2745.4SB 925.0000 700.0250.571 925.2000 778.2555.303 925.4000 851.2560.075 925.5000 905.6060,081 925.6000 909.61

WE CERTIFY TEAT ALL TEST EQUIPMENT USED IN THE PERFORMANCE OF THE CALIBRATIONS ARE ACCURATE AND TRACEABLE TO THE W.I.S.T, ALSO, WE CSRT1PY THAT 00%. QUALITY ASSURANCE SYSTEM IS IN COMPLIANCE WITH ISO 9001.

NEARITY +/- .3? % OPERATOR

' AVSMA9B 937.359 PULSES/GAL BNGW&. APPROVAL

EMULATED QAS FACTOR IS 6938.1% PULGES/ACf.

116 -

Page 129: Construction of The Two-Phase Critical Flow Test Facility

-T-ij- 1-2 Coolant Flowmeter (FT-301)

EMERSON

Dietench Standard Inc. Subsidiary of Rammoimt

Co*#### Name:Bttpsr Pur/mse Oid« »: !i*M***i*CMPM#*##*OMK Ki#i,* miMwii#' rWiw#$«WR 2$3267*S 1T*glnte-, h mL*b CdRmMkxi Performed:

fUSMUm* BATA: CAUBRATKM MWMMC# CQKOmONS;Amw#k#aOmA 43 k-ys L*#am#*r

ism awcr nwd-M= AScwbte Fkwate MW pp«i& iw nWWfAbwaWeDP-. 7M3* immwZC CWW#m%# l.’-Swt'Srmv#WW' » C MaamwnOWWWMwf T*4 AM

1#l#*)

mp#o. #fib# *v»eww.' 6o# Aw*#^ K *****

fidd fWd MaM R#*moW# Ra&U*H&'. Temp Vetotity uor dp No. UUT tkm flow now Erw UUT? Maw

^•$et ;« #Y* OPM o*o %mm#% *Wh#» iyw^3T.T" sorts' J MR] 7BT 7#g(%

t 772 ?*o m* 539 35 751470 #*#7 *2#4% 7144%3 771 75 8 37) a* 00 707*13 *34* m® *1*2% #@7%<* 779 Z2 1 ^!# 314% W47 #%*# %.12%

77* 1S4 3K1 24304 Mn# 4*7 47t» #1*0% 4*j0%§ n* 16 1 3&T %8«B 44*M 3M« #** M*7% *0*0%2 77f 1?B 37 J) W27 147**7 »! **a »1S*a 77# ** 37.# 5#.% MMOO tmi #410%# 7#.0 #3 y# 3**2 174## 1## i«$ 'O.iOGM *#ia*to Tmi 3.2 mi MOT1 777 4*M% »i#%

A; !t:trwiw S*t^5wT«£ W ' tfij!> <-i »-« NriKMn* *w AnrV*# s^E f fow Nsrcbow.

fiowweTER CAuwnpw

“ flt-v- <‘'W, ;-«W*1 «< <?tet)X-ar<vt Lffw i*-y* ><r>{ oAW■ torthfttxm #** wrymw **#na mowwmng #owyf*N troreetste to Nf5iT wiji *p# r*w« mwwMWM#ml

«f *#»Q 35% w b»««r

117

Page 130: Construction of The Two-Phase Critical Flow Test Facility

4# n-i 44

ITEM TAG SPECIFICATION

Smart GaugePressureTransmitters- Impulse

Tubing

PT-101PT-102

Model : 3051PG5A22A1AB4E5M5Q4Accuracy : ±0.05 ?6305IPG : Model 3051P reference class GAGE Pressure Transmitter

5 : Range / Min. Span : -2000 to 2000 PSI /200PSI (-207 to 25 kPa)

A : 4-20 mA with Digital Signal Based on HART Protocol

2 : Process Flange : Coplanar, SST

Drain / Vent : SST

Flange Adapter : SST

2 : Isolating Diaphragm : 316L SST

A : O-ring : Glass-filled TEE1 : Fill Fluid : SiliconeA : Housing : Polyurethane-covered Aluminum, Conduit Entry :1/2-14 NPTB4 : Coplanar Flange Bracket for 2-in. Pipe or Panel Mounting, allSSTE5 : EM Explosion-Proof ApprovalM5 : LCD Meter for Aluminum HousingQ4 : Calibration Data Sheet

Tag No Calib. Range

PT-101 0-120 kg/cnf

PT-102 0-120 kg/cnfSmart GaugePressureTransmitters- Impulse

Tubing

PT-103 Model : 3051CG5A22A1AB4E5M5Q4Accuracy : ±0.075 963051CG : GAGE Pressure Transmitter5 : Range / Min. Span : -14.7 to 2000 PSI /20PSI (0 to 13800 kPa /138kPa)

A : 4-20 mA with Digital Signal Based on HART Protocol

2 : Process Flange : Coplanar, SST

Drain / Vent : SST

Flange Adapter : SST

2 : Isolating Diaphragm : 316L SST

A : O-ring : Glass-filled TEE1 : Fill Fluid : SiliconeA : Housing : Polyurethane-covered Aluminum, Conduit Entry :1/2-14 NPTB4 : Coplanar Flange Bracket for 2-in. Pipe or Panel Mounting, allSSTE5 : EM Explosion-Proof ApprovalM5 : LCD Meter for Aluminum HousingQ4 : Calibration Data Sheet

Tag No Calib. RangePT-103 0-120 kg/cnf

- 118 -

Page 131: Construction of The Two-Phase Critical Flow Test Facility

n-i

ITEM TAG SPECIFICATION

Smart Gauge PT-101 Model : 3051CG4A22A1AB4E5M5Q4Pressure PT-102 Ditto item No.2 butTransmitters- Impulse

4 : Range / Min. Span : -14.7 to 300 PSI /3PSI (0 to 2070 kPa)

Tubing Tag No Calib. Range

PT-301 0 - 20 kg/cnf

PT-302 0 - 20 kg/cnfSmart Gauge PT-201 Model : 3051TG4A2A21AB4E5M5Q4Pressure PT-202 3051TG : Gauge Pressure TransmitterTransmitters PT-203 Accuracy : ±0.075 96- Direct PT-204 4 : Range : 0-40 to 0-4000 psig (0-276 to 0-27580 kPa)mounting PT-205 A : 4-20 mA with Digital Signal Based on HART Protocol

2A

21

A

B4

: Process Connection : 1/4 - 18 NPT Female

316L SST Isolating Diaphragm

316L SST Process Connection Wetted Parts

Silicone Fill Fluid

Housing : Polyurethane-covered Aluminium Housing

1/2 - 14 NPT Conduit Entry Size

: Bracket for 2-in. Pipe or Panel Mounting, All SST

E5 : Factory Mutual (FM) Explosion Proof ApprovalM5Q4

LCD Meter for Aluminium Housing Calibration Data Sheet

Tag No Calib. Range

PT-201 0 — 200 kg/cnf

PT-202 0 — 250 kg/cnf

PT-203 0 — 250 kg/cnf

PT-204 0 — 250 kg/cnf

PT-205 0 — 250 kg/cnf

- 119 -

Page 132: Construction of The Two-Phase Critical Flow Test Facility

4# n-2 44

ITEM SERVICE SPECIFICATION

Smart Diff.Pressure

Transmitters -

FLOW METER

FT-101FT-201

Model : 3051CD2A02AlAE5M5Q4S5/with 305AC32B11B4Accuracy : ±0.075 96

3051CD : Differential Pressure Transmitter2 : Range / Min. Span : -250 to 250 inch H20 /2.5inchH20

(-62.2 to 62.2kPa /0.6 kPa)

A : 4-20 mA with Digital Signal Based on HART Protocol

0 : Alternate Flange

2 : Isolating Diaphragm : 316L SST

A : O-ring : Glass-filled TEE

1 : Fill Fluid : SiliconeA : Housing : Polyurethane-covered Aluminum, Conduit

Entry : 1/2-14 NPT

E5 : EM Explosion-Proof ApprovalM5 : LCD Meter for Aluminum HousingQ4 : Calibration Data SheetS5 : Assembled to Model 305 integral Manifold305 : Integral ManifoldA : ANDERSON GreenwoodC : Coplanar3 : 3 Valve

2 : Materials of Contraction

Body : 316SST Bonnet : 316SST

Stem : 316SST Drain/Vent : 316SST

B : Process connection : 1/2-14NPT

1 : Packing Material : Teflon

1 : Valve Seat : Integral (316SST)

B4 : SST Bracket for 2-in. Pipe Mount

Tag No Calib. Range

FT-101 0—5000 mmH20

FT-201 0—5000 mmH20

- 120 -

Page 133: Construction of The Two-Phase Critical Flow Test Facility

jf-# n-2

ITEM SERVICE SPECIFICATION

Smart Diff.Pressure

Transmitters -FLOW METER

FT-301 Model : 3051CD2A02A1AE5M5Q4C1 S5/with 305RC32B11B4

/with PBF+25S, 040, H9900, C9900, F99S0, 2, A, 1, A

Ditto item No.1 but

PBF+25S : Probar+Flanged, SS

040 : Line size : 4in. (100mm)

H9900 : Head Style : Special Head Code

C9900 : Special Instrument connection(Gas or Liquid)

F99S0 : Special Sensor Flange Flange, SS (2500# SS Flange)

2 : DP Range (2-2.5 to 0-250 inH20)A : 4-20mA with Digital Signal Base1 : Fill Fluid - SiliconA : Transmitter Housing Material - Epoxy-poly-alum 1/2-14 Pipe Size : 4" SCH 40(Horizontal)

Tag No Calib. RangeFT-301 0 - 5308.6 mmH20

Turbine - FLOW METER

FT-202 (1) Rate indicator / TotalizerModel : HIT-2-5-C-4-CE-FFeature

- 8 digit display of rate- 4 1/2 digit display of rate- 10 PT Flowmeter Linearization- 4-20mA output- 8.5 ~30Vdc input power required- NEMA 4X enclosure

(Control panel-internal, behind clear lens)- Wall Mount- CE Approved

(2) Hoffer 1" HO Precision Series Turbine FlowmeterModel : H01X1-30-B-1(RPR51S)F25CS-CEService gas : Nitrogen(230bar Pressure)Repeatable Flow Range : 0.012 — 1.05kg/secRepeatability : ±0.25/6 of reading over the repeatable flow rangeConstruction : 316 SS with 17.4PH rotorEnd Fitting : 1" 2500# CS raised face flanges per ANSI Bearings : Shielded lubricated 440 SS bearingPickup coil : Magnetic typeCalibration : Supplied with calculated K-Factor based on ten

point water calibration and accurated to ±2/6

- 121

Page 134: Construction of The Two-Phase Critical Flow Test Facility

4# n-3 44

ITEM SERVICE SPECIFICATION

Smart

Diff.Pressure

Transmitters

- Level

LT-101 Model : 3051PD2A02AlAB4E5M5Q4S5/with 305AC32B11B4

Accuracy : ±0.05 ?6

3051PD : Model 305IP reference class Differential Pressure Transmitter2 : Range / Min. Span : -250 to 250 inchH20 /25inchH20 (0 to

62.2kPa /6.2 kPa)

A : 4-20 mA with Digital Signal Based on HART Protocol

0 : Alternate Flange

2 : Isolating Diaphragm : 316L SST

A : O-ring : Glass-filled TFE

1 : Fill Fluid : SiliconeA : Housing : Polyurethane-covered Aluminum, Conduit Entry :

1/2-14 NPT

B4 : Coplanar Flange Bracket for 2-in. Pipe or Panel Mounting, all

SST

E5 : FM Explosion- Proof ApprovalM5 : LCD Meter for Aluminum HousingQ4 : Calibration Data SheetS5 : Assembled to Model 305 integral Manifold305 : Integral ManifoldA : ANDERSON GreenwoodC : Coplanar3 : 3 Valve

2 : Materials of Contraction

Body : 316SST Bonnet : 316SST

Stem : 316SST Drain/Vent : 316SST

B : Process connection : 1/2-14NPT

1 : Packing Material : Teflon

1 : Valve Seat : Integral (316SST)

B4 : SST Bracket for 2-in. Pipe Mount

Tag No Calib. Range

FT-101 0-4700 mmH20

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Page 135: Construction of The Two-Phase Critical Flow Test Facility

ra# II—3 ra^ 711^715] A>oj:(7|]^)

ITEM SERVICE SPECIFICATION

Smart Diff.Pressure

Transmitters -

Level

LT-301 Model : 3051CD2A02A1AE5M5Q4C1 S5/with 305AC32B11B4

Accuracy : ±0.075 ?6

3051CD : Differential Pressure Transmitter2 : Range / Min. Span : -250 to 250 inch H20 /2.5inchH20 (-62.2

to 62.2kPa /0.6 kPa)

A : 4-20 mA with Digital Signal Based on HART Protocol

0 : Alternate Flange

2 : Isolating Diaphragm : 316L SST

A : O-ring : Glass-filled TFE

1 : Fill Fluid : SiliconeA : Housing : Polyurethane-covered Aluminum, Conduit Entry :

1/2-14 NPT

E5 : EM Explosion- Proof ApprovalM5 : LCD Meter for Aluminum HousingQ4 : Calibration Data SheetS5 : Assembled to Model 305 integral Manifold305 : Integral ManifoldA : ANDERSON GreenwoodC : Coplanar3 : 3 Valve

2 : Materials of Contraction

Body : 316SST Bonnet : 316SST

Stem : 316SST Drain/Vent : 316SST

B : Process connection : 1/2-14NPT

1 : Packing Material : Teflon

1 : Valve Seat : Integral (316SST)

B4 : SST Bracket for 2-in. Pipe Mount

Tag No Calib. Range

LT-301 0 - 2000 mmH20

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Page 136: Construction of The Two-Phase Critical Flow Test Facility

II—3 711^715] A>oj:(7|]^)

ITEM SERVICE SPECIFICATION

Eclipse Radar LT-102 Model : X705-501A-513/ with 7MD-A110-470type Level Max. Process temperature : 400°C @ 135barTransmitter Max. Process pressure : 345bar@20°C

Measured Error : ±0.126 Probe length1) Transmitter Part Number705 : Eclipse Guided Wave Radar Level Transmitter

5 Power : 24Vdc, Two wire

0 4-20 mA only, without HART

1 EnglishA : Digital display and keypad

5 Integral, Explosion Proof (EM & CSA)

1 N/A

3 Conduit connection : PG 16

2) Probe Part Number

7M : Eclipse GWR probe, Metric unit of measure

D : Coaxial, High Temperature / Hihg Pressure, 3/4" Process

conn. Or Larger

A : Material of Construction : 316/316L SS11 : 3/4" NPT Thread0 N/A470 : Length : 470cm

Tag No Calib. Range

LT-102 0-4700 mmH20

- 124 -

Page 137: Construction of The Two-Phase Critical Flow Test Facility

^ II —4 A>Oj:

ITEM SERVICE SPECIFICATION

Multi type TE-101 Model : WatroThermocouple TE-102 1) Type : K Unground, Special Grade

( 6Ponit ) TE-103 2) Response Time : 0.25sec

TE-104 3) Output : 0~15mV

TE-105 4) Measurement Range : 0~ Max. 400°CTE-106 5) Accuracy : 0.4% of Measured ( Max. error : 1.1 °C)

Tag No. LengthTE-101 5300 mmTE-102 4500 mmTE-103 3700 mmTE-104 2900 mmTE-105 2100 mmTE-106 1300 mm

Sing type Thermocouple

TE-107TE-108TE-109TE-110TE-111TE-112TE-113TE-201TE-203TE-204TE-205TE-206TE-301TE-302TE-303

Model : Watro1) Type : K Unground, Special Grade2) Response Time : 0.25sec3) Output : 0~15mV4) Measurement Range : 0~ Max. 400 °C5) Accuracy : 0.496 of Measured ( Max. error6) T/C Connector type

LUC)

Tag No. LengthTE-107 200mmTE-108TE-109TE-110TE-111 200mmTE-112 200mmTE-113 300mmTE-201 200mmTE-203 200mmTE-204TE-205TE-206 200mmTE-301 250mmTE-302 200mmTE-303 300mm

- 125 -

Page 138: Construction of The Two-Phase Critical Flow Test Facility

^ ^ 4 % ^

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KAERI/TR-2141/2002

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444444 #14 4#

4 4 (15-20 #)

SMART €4&4 #4444 444344 44**4 4444 €4# #4#4 $14 44447}# 44444444 4444* 4444*#4 -@444444 4# ##4-54. SMART 44-3# 7}#-# 4 44-7]] *#A}3# 44 44 444 4&#4 44444 434 4# @44 44 4 4 20 mm, 44 4444 12 MPa, @-@3 0 - 60 C ^ 4**7}# *4 4# 0.5 kg/s 3 44 44* 44 * #4* #4 @## ##4- y]7M *3 *4=* #^4.# ###@* 44454. #4*44 *#* 34 3.43.44 44#7} #4 44 44*714 44 *@ Test, section,4* #3 4 4* r27} 45113 *433 #444. 4*4371- 544 3*344 @4** test section^4 44## 4@*** 4## *@ @#*#3 @#44. 3# @4*7} #44# 44*4# 344 4*7}# @3@ @#44, * #4 444 444 #44 4444#34 44# 44*4 44 4-4* @#44. * 4* 4*7}# @3# test section ## @44 444## 44# *4 #** #4@@*4# * 53* #@4-54. #4*44 #4* @##@@ #44 @#4@# **# * 53 #*14-3# 4-34 44### 44 data* *44-3 @## * 53*4-54. 344 4* 7}#* #-*4# 4 ##44* 357}#5444@@ 44# 44 #*7}#@# ^1^3 #*4# #*7}#54#A}3#4 #4 #3, *44 4 4- 4# ## 4 4 *4-4# 4**5 4 54 7}* 454-.

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Page 139: Construction of The Two-Phase Critical Flow Test Facility

BIBLIOGRAPHIC INFORMATION SHEET

Performing Org.

Report No.

Sponsoring Org.

Report No.Standard Report No. INIS Subject Code

KAERI/TR-2141/2002

Title / Subtitle Construction of the two-phase critical flow test facility

Project Manager

and DepartmentC.H. Chung, (Thermal Hydraulic Safety Analysis Team)

Researcher and

Department

S.K. Chang, H.S. Park, K.H. Min, N.H. Choi (Thermal Hydraulic Safety Analysis Team), C.H. Kim (MMIS Team), S.H. Lee (Nuclear Chemical Engineering Research Team) H.C. KIM, M.H. Chang (Power Reactor Development Team)

Publication

PlaceTaejon Publisher KAERI

Publication

Date2002

Page 137 p. 111. & Tab. Yes( O ), No ( ) SizeCm.

Note

Classified Open( O ), Restricted( ),

___Class DocumentReport Type Technical Report

Sponsoring Org. Contract No.

Abstract (15-20 Lines)

The two-phase criti engineering laboratory entrained with non-cc MPa of pressure and gas injection into br components of the containing coolant, inter-connected with opens, high pressure, critical two-phase f connected to two hig pressure in the press test section for the performed on compute and test data such section, gas injection system for further da high pressure gas reviewed, and inspect And the regulatory be

cal test loop facility has been constructed in the KAERI t for the simulation of small break loss of coolant accident mdensible gas of SMART. The test facility can operate at 12

0 to 60 C- of sub-cooling with 0.5 kg/s of non- condensible eak flow, and simulate up to 20 mm of pipe break. Main test facility were arranged such that the pressure vessel a test section simulating break and a suppression tank pipings were installed vertically. As quick opening valve

Temperature coolant flows through the test section forming ow into the suppression tank. The pressure vessel was h pressure N2 gas tanks through a control valve to control ure vessel. Another N2 gas tank was also connected to the ion-condensible gas injection. The test facility operation was ;rs supported with PLC systems installed in the control room, as temperature, break flow rate, pressure drop across test flow rate were all together gathered in the data acquisition

:a analysis. This test facility was classified as a safety related 'acility in law. Thus the loop design documentation was sd during construction of the test loop by the regulatory body. )dy issued permission for the operation of the test facility.

Subject Keywords

(About 10 words)

non-condensible gas, two phase flow, critical flow, SMART,

test facility, N2 gas, break flow, DAS