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Presented By Kevin Fuentes Thermal & Fluids Analysis Workshop TFAWS 2018 August 20-24, 2018 NASA Johnson Space Center Houston, TX Temperature Controller Design of a Heat Exchanger within a High Temperature Oxygen Production System using a Lumped Thermal Modeling approach Kevin Fuentes, Samuel Ogletree and M. A. Rafe Biswas Department of Mechanical Engineering, Houston Engineering Center, University of Texas at Tyler TFAWS Interdisciplinary Paper Session

TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

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Page 1: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Presented By

Kevin Fuentes

Thermal & Fluids Analysis Workshop

TFAWS 2018

August 20-24, 2018

NASA Johnson Space Center

Houston, TX

Temperature Controller Design of a Heat Exchanger

within a High Temperature Oxygen Production System

using a Lumped Thermal Modeling approach

Kevin Fuentes, Samuel Ogletree and M. A. Rafe Biswas

Department of Mechanical Engineering, Houston Engineering Center, University of

Texas at Tyler

TFAWS Interdisciplinary Paper Session

Page 2: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

General Overview

TFAWS 2018 – August 20-24, 2018 2

β€’ Problem Statement

β€’ Project ObjectiveMotivation

β€’ Mass Balance

β€’ Energy BalanceDynamic Modeling

β€’ State Space

β€’ PID TuningControls

Page 3: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

O2 Production System with Pre-Heater

TFAWS 2018 – August 20-24, 2018 3

Page 4: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

O2 Production System with Heat Recovery

TFAWS 2018 – August 20-24, 2018 4Addition of Heat

Recovery Unit

Page 5: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Simple HX Model

TFAWS 2018 – August 20-24, 2018 5

Outlet

Outlet

Well

Mixed

Well

Mixed

Page 6: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Design Constraints and Assumptions

β€’ Treat shell and tube sides as two separate control volumes

β€’ Well-insulated heat exchanger

β€’ Well–mixed control volumes = Control Volume temperature

is the same as outlet temperature.

β€’ Fully developed flows.

β€’ No mass accumulation in control volume = Steady state

mass flows.

β€’ Constant and low conduction resistance.

β€’ Uniform, constant fluid properties on shell and tube sides.

β€’ No external work on the system.

β€’ Hot fluid in the tubes.

β€’ Counter current flow configuration.

TFAWS 2018 – August 20-24, 2018 6

Page 7: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Mass Balance

β€’ General Mass Balance

π‘‘π‘š

𝑑𝑑= αˆΆπ‘š1 βˆ’ αˆΆπ‘š2

β€’ Mass Flow Rate of Shell = αˆΆπ‘šπ‘ 

αˆΆπ‘šπ‘  = 3.95π‘₯10βˆ’4π‘˜π‘”

𝑠‒ Mass Flow Rate of Tube = αˆΆπ‘šπ‘‘

αˆΆπ‘šπ‘‘ = 9.86π‘₯10βˆ’5π‘˜π‘”

𝑠

TFAWS 2018 – August 20-24, 2018 7

Page 8: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Fluid Properties

Shell Inlet Fluid

Properties

Control Volume Fluid

Properties

Specific Heat (Cp) [kJ/kgK] 1.006 1.089

Temperature (T) [℃] 25 117

TFAWS 2018 – August 20-24, 2018 8

Tube Inlet Fluid

Properties

Control Volume Fluid

Properties

Specific Heat (Cp) [kJ/kgK] 1.154 1.089

Temperature (T) [℃] 519 117

Shell Inlet Fluid

Properties

Control Volume Fluid

Properties

Specific Heat (Cp) [kJ/kgK] 1.006 1.089

Temperature (T) [℃] 25 117

Constants

Convection Coefficient (Uo) [W/m2K] 0.12

Surface Area (Ao) [m2] 0.58

Mass of Fluid in Shell (ms) [kg] 0.0049

Mass of Fluid in Tubes (mt) [kg] 0.0014

Page 9: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Energy Balance - Heat

β€’ General Energy Balance

β€’ Heat Transfer Rate ( αˆΆπ‘Έ)

– αˆΆπ‘Έ=UA(AMTD)

– Arithmetic Mean Temperature Difference (AMTD)

𝐴𝑀𝑇𝐷 =𝑇𝑑1 + 𝑇𝑑

2βˆ’π‘‡π‘ 1 + 𝑇𝑠

2

β€’ Enthalpy rate ( αˆΆπ‘šβ„Ž)

– αˆΆπ‘šβ„Ž = αˆΆπ‘šπΆπ‘Ξ”π‘‡

β€’ External Work ( αˆΆπ‘Ύ)

– αˆΆπ‘Š =0

TFAWS 2018 – August 20-24, 2018 9

d(π‘šπΆπ‘(𝑇 βˆ’ π‘‡π‘Ÿπ‘’π‘“))

𝑑𝑑= αˆΆπ‘š1 βˆ™ β„Ž1 βˆ’ αˆΆπ‘š2 βˆ™ β„Ž + αˆΆπ‘„ βˆ’ αˆΆπ‘Š

Page 10: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Energy Balance

β€’ Shell and Tube Dynamic Model (DM)

– Tube Energy Balance

𝑑𝑇𝑑𝑑𝑑

=αˆΆπ‘šπ‘‘ βˆ™ 𝐢𝑝𝑑1π‘šπ‘‘ βˆ™ 𝐢𝑝𝑑

𝑇𝑇1 βˆ’ π‘‡π‘Ÿπ‘’π‘“ βˆ’αˆΆπ‘šπ‘‘

π‘šπ‘‘π‘‡π‘‘ βˆ’ π‘‡π‘Ÿπ‘’π‘“ βˆ’

π‘ˆπ‘œπ΄π‘œπ‘šπ‘‘ βˆ™ 𝐢𝑝𝑑

𝑇𝑑1 + 𝑇𝑑2

βˆ’π‘‡π‘ 1 + 𝑇𝑠

2

– Shell Energy Balance

𝑑𝑇𝑠𝑑𝑑

=αˆΆπ‘šπ‘  βˆ™ 𝐢𝑝𝑠1π‘šπ‘  βˆ™ 𝐢𝑝𝑠

𝑇𝑆1 βˆ’ π‘‡π‘Ÿπ‘’π‘“ βˆ’αˆΆπ‘šπ‘ 

π‘šπ‘ π‘‡π‘  βˆ’ π‘‡π‘Ÿπ‘’π‘“ +

π‘ˆπ‘œπ΄π‘œπ‘šπ‘  βˆ™ 𝐢𝑝𝑠

𝑇𝑑1 + 𝑇𝑑2

βˆ’π‘‡π‘ 1 + 𝑇𝑠

2

TFAWS 2018 – August 20-24, 2018 10

Page 11: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Steady State

β€’ Shell and Tube Steady State Model (SM)

– Tube Energy Balance

0 =αˆΆπ‘šπ‘‘ βˆ™ 𝐢𝑝𝑑1π‘šπ‘‘ βˆ™ 𝐢𝑝𝑑

𝑇𝑑1 βˆ’ π‘‡π‘Ÿπ‘’π‘“ βˆ’αˆΆπ‘šπ‘‘

π‘šπ‘‘π‘‡π‘‘ βˆ’ π‘‡π‘Ÿπ‘’π‘“ βˆ’

π‘ˆπ‘œπ΄π‘œπ‘šπ‘‘ βˆ™ 𝐢𝑝𝑑

𝑇𝑑1 + ΰ΄₯𝑇𝑑2

βˆ’π‘‡π‘ 1 + ΰ΄₯𝑇𝑠

2

– Shell Energy Balance

0 =αˆΆπ‘šπ‘  βˆ™ 𝐢𝑝𝑠1π‘šπ‘  βˆ™ 𝐢𝑝𝑠

𝑇𝑠1 βˆ’ π‘‡π‘Ÿπ‘’π‘“ βˆ’αˆΆπ‘šπ‘ 

π‘šπ‘ 

ΰ΄₯𝑇𝑠 βˆ’ π‘‡π‘Ÿπ‘’π‘“ +π‘ˆπ‘œπ΄π‘œ

π‘šπ‘  βˆ™ 𝐢𝑝𝑠

𝑇𝑑1 + ΰ΄₯𝑇𝑑2

βˆ’π‘‡π‘ 1 + ΰ΄₯𝑇𝑠

2

TFAWS 2018 – August 20-24, 2018 11

Page 12: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Linearization and State Variables

β€’ Shell and Tube DM – SM

– Deviation State Variables

– Tube Energy Balance

π‘‘πœƒ2𝑑𝑑

=αˆΆπ‘šπ‘‘ βˆ™ 𝐢𝑝𝑑1π‘šπ‘‘ βˆ™ 𝐢𝑝𝑑

πœƒ1 βˆ’αˆΆπ‘šπ‘‘

π‘šπ‘‘πœƒ2 βˆ’

π‘ˆπ‘œπ΄π‘œπ‘šπ‘‘ βˆ™ 𝐢𝑝𝑑

πœƒ1 + πœƒ22

βˆ’πœƒ3 + πœƒ4

2

– Shell Energy Balance

π‘‘πœƒ4𝑑𝑑

=αˆΆπ‘šπ‘  βˆ™ 𝐢𝑝𝑠1π‘šπ‘  βˆ™ 𝐢𝑝𝑠

πœƒ3 βˆ’αˆΆπ‘šπ‘ 

π‘šπ‘ πœƒ4 +

π‘ˆπ‘œπ΄π‘œπ‘šπ‘  βˆ™ 𝐢𝑝𝑠

πœƒ1 + πœƒ22

βˆ’πœƒ3 + πœƒ4

2

TFAWS 2018 – August 20-24, 2018 12

πœƒ1 = 𝑇𝑑1 βˆ’ 𝑇𝑑1 βˆ’ π‘‡π‘Ÿπ‘’π‘“ πœƒ3 = 𝑇𝑠1 βˆ’ 𝑇𝑠1 βˆ’ π‘‡π‘Ÿπ‘’π‘“

πœƒ2 = 𝑇𝑑 βˆ’ ΰ΄₯𝑇𝑑 βˆ’ π‘‡π‘Ÿπ‘’π‘“ πœƒ4 = 𝑇𝑠 βˆ’ ΰ΄₯𝑇𝑠 βˆ’ π‘‡π‘Ÿπ‘’π‘“

Page 13: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

State Space (MISO)

ሢπ‘₯ = 𝐴π‘₯ + 𝐡𝑒

𝑦 = 𝐢π‘₯ + 𝐷𝑒

αˆΆπœ½πŸ’αˆΆπœ½2=

βˆ’π‘ˆπ‘œπ΄π‘œ2π‘šπ‘ πΆπ‘π‘ 

βˆ’αˆΆπ‘šπ‘ 

π‘šπ‘ 

π‘ˆπ‘œπ΄π‘œ2π‘šπ‘ πΆπ‘π‘ 

π‘ˆπ‘œπ΄π‘œ2π‘šπ‘‘πΆπ‘π‘‘

βˆ’π‘ˆπ‘œπ΄π‘œ2π‘šπ‘‘πΆπ‘π‘‘

βˆ’αˆΆπ‘šπ‘‘

π‘šπ‘‘

πœ½πŸ’πœ½πŸ

+

βˆ’π‘ˆπ‘œπ΄π‘œ2π‘šπ‘ πΆπ‘π‘ 

+αˆΆπ‘šπ‘ πΆπ‘π‘ 1π‘šπ‘ πΆπ‘π‘ 

π‘ˆπ‘œπ΄π‘œ2π‘šπ‘ πΆπ‘π‘ 

π‘ˆπ‘œπ΄π‘œ2π‘šπ‘‘πΆπ‘π‘‘

βˆ’π‘ˆπ‘œπ΄π‘œ2π‘šπ‘‘πΆπ‘π‘‘

+αˆΆπ‘šπ‘‘ 𝐢𝑝𝑑1π‘šπ‘‘πΆπ‘π‘‘

πœ½πŸ‘πœ½πŸ

𝑦 = πœ½πŸ’ = [1 0]πœ½πŸ’πœ½πŸ

+ 𝟎𝜽3𝜽𝟏

TFAWS 2018 – August 20-24, 2018 13

Page 14: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Open Loop Response

TFAWS 2018 – August 20-24, 2018 14

Page 15: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Control Design Requirements

β€’ No overshoot.

β€’ 2% Steady State Error or less.

β€’ No rapid change in temperature.

β€’ Steady State in less than 3 hours

TFAWS 2018 – August 20-24, 2018 15

Page 16: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Closed Loop Response

TFAWS 2018 – August 20-24, 2018 16

Controller Value

P 50

I 0

D 0

Page 17: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Closed Loop Response

TFAWS 2018 – August 20-24, 2018 17

Controller Value

P 0.747

I 0.042

D 0

Page 18: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Closed Loop Response

TFAWS 2018 – August 20-24, 2018 18

Controller Value

P 0

I 0.00137

D 0

Page 19: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Closed Loop Response

TFAWS 2018 – August 20-24, 2018 19

Controller Value

P 8.86

I 0.603

D 0.39

Page 20: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Conclusion

β€’ A Heat Exchanger designed for Heat Recovery

in High Temperature Oxygen Production System

was analyzed

β€’ A Simplified Dynamic model was developed to

approximate the outlet shell temperature

β€’ PID Controller is designed to ensure outlet shell

temperature is maintained at given setpoint

β€’ Based on the tuning, desired requirements

including settling time can be achieved.

TFAWS 2018 – August 20-24, 2018 20

Page 21: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

References

β€’ Janna, William S., and Raj P. Chhabra. Design of Fluid

Thermal Systems. Cengage Learning, 2015.

β€’ Ogata, Katsuhiko. System Dynamics. Prentice Hall,

1998.

β€’ Engineering ToolBox, (2005). Dry Air Properties. [online]

Available at: https://www.engineeringtoolbox.com/dry-air-

properties-d_973.html

TFAWS 2018 – August 20-24, 2018 21

Page 22: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Thank you

TFAWS 2018 – August 20-24, 2018 22

Page 23: TFAWS Interdisciplinary Paper SessionFluid Properties Shell Inlet Fluid Properties Control Volume Fluid Properties Specific Heat (Cp) [kJ/kgK] 1.006 1.089Temperature (T) [ ] 25 117TFAWS

Appendix – Steady State Temperature

TFAWS 2018 – August 20-24, 2018 23