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Distribution Statement A : Approved For Public Release; Distribution is unlimited 1 A testcase framework for the PLCS-IF Ben Kassel Naval Surface Warfare Center Carderock Division Distribution Statement A : Approved For Public Release; Distribution is unlimited

A testcase framework for the PLCS-IF

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A testcase framework for the PLCS-IF. Ben Kassel Naval Surface Warfare Center Carderock Division. Distribution Statement A : Approved For Public Release; Distribution is unlimited. Part & System Definition (Caterpillar 3512, Starboard Main Engine, Propulsion System) - PowerPoint PPT Presentation

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Page 1: A  testcase  framework for the PLCS-IF

Distribution Statement A : Approved For Public Release; Distribution is unlimited

1

A testcase framework for the PLCS-IF

Ben KasselNaval Surface Warfare Center

Carderock Division

Distribution Statement A : Approved For Public Release; Distribution is unlimited

Page 2: A  testcase  framework for the PLCS-IF

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Product Model data is the combination of 3D geometry and non-graphic attributes to define ship objects such as a piece of equipment, deck, bulkhead, etc. Product Model data can be organized to define interim products and ultimately the entire ship.

Advocates anticipate substantial economies from Product-Model-based design, construction, and service-life support activities due to better integration and reduction of engineering effort to locate, verify, and transform information.

Part & System Definition (Caterpillar 3512, Starboard Main Engine, Propulsion System)

Design Definition (12 cylinder 4 stroke diesel engine )

Physical (Geometry, material connections, etc.)

Engineering Definition (1175 HP, 6464kg, 170mm bore, 190mm stroke)

Process Definition (Starting instructions, shaft alignment)

Logistics Support (FGC, SCLSIS, etc.)

Digital Product Model DataA brief review

Page 3: A  testcase  framework for the PLCS-IF

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Digital Product Model Data… its more than just design and construction

Functional Analyses

Concept or Feasibility

Studies (Analysis of

Material Approaches)

Identify Critical

Systems & Technologies

Analysis of Alternatives

Feasibility Studies

Capabilities Development

Pre-Preliminary / Indicative;

Preliminary; andContract Design

Sub-Systems Development

IOCDetail Design

Ship Production

Trials

Life CycleOperations

&Support

A B FOC

Ship Production

DT&E/LFT&E/IOT&E

Follow (FRP) Ship ConstructionFRP DR

ICD CDD

C

Follow (LRIP) Ship Construction

Program Initiation at MS A or MS B

Acquisition Strategy Defined

Full Program Funding through

Out Years

Lead Ship Ready for Deployment

Full Rate Production

Decision Review

Lead Ship Construction

Major Sub -Systems Development

System Integration

RDT&E BA 4 & BA 5(for Concepts, Requirements Dev, Design, Systems Eng, Acq Doc, Major Systems Dev.)

Design Readiness

Review

SCN

Critical Technology Development

O&MNRDT&E BA 3 & BA 4 (for Critical Technology Development)

FOT&E (as required)

DRR

Operations &Support

New DoD New DoD 50005000

Technology Opportunities & User Needs

Operations &Support

System Development

& Demonstration

Technology Development

BProduction & Deployment

Pre-Systems Acquisition Systems Acquisition(Engineering Development, Demonstration, LRIP & Production)

C

Sustainment

ICD CDD

FOC

LRP/IOT&E FRPDecision Review

IOC

Concept Refinement

A

DisposalSustainment

ConceptDecision

CPD

Joint Capabilities Integration & Development

CD

CPD

Design Decision Review

Exploratory Design Force

Architecture Studies

ROM or Concept Studies

Functional Analyses

Concept or Feasibility

Studies (Analysis of

Material Approaches)

Identify Critical

Systems & Technologies

Analysis of Alternatives

Feasibility Studies

Capabilities Development

Pre-Preliminary / Indicative;

Preliminary; andContract Design

Sub-Systems Development

IOCDetail Design

Ship Production

Trials

Life CycleOperations

&Support

AA BB FOC

Ship Production

DT&E/LFT&E/IOT&E

Follow (FRP) Ship ConstructionFRP DR

ICD CDD

CC

Follow (LRIP) Ship Construction

Program Initiation at MS A or MS B

Acquisition Strategy Defined

Full Program Funding through

Out Years

Lead Ship Ready for Deployment

Full Rate Production

Decision Review

Lead Ship Construction

Major Sub -Systems Development

System Integration

RDT&E BA 4 & BA 5(for Concepts, Requirements Dev, Design, Systems Eng, Acq Doc, Major Systems Dev.)

Design Readiness

Review

SCN

Critical Technology Development

O&MNRDT&E BA 3 & BA 4 (for Critical Technology Development)

FOT&E (as required)

DRR

Operations &Support

New DoD New DoD 50005000

Technology Opportunities & User Needs

Operations &Support

System Development

& Demonstration

Technology Development

BBProduction & Deployment

Pre-Systems Acquisition Systems Acquisition(Engineering Development, Demonstration, LRIP & Production)

CC

Sustainment

ICD CDD

FOC

LRP/IOT&E FRPDecision Review

IOC

Concept Refinement

AA

DisposalSustainment

ConceptDecision

CPD

Joint Capabilities Integration & Development

CD

CPD

Design Decision Review

Exploratory Design Force

Architecture Studies

ROM or Concept Studies

The Digital Product Model can support the entire ship’s lifecycle.

• The DPM should be the primary source of data for all pre milestone B activities.• The DPM should be used by NAVSEA to validate the design during the Detail

Design and Ship Production phases.• The DPM should be the authoritative source of data in support of the Situation

Incident Room upon delivery of the ship.• The DPM should be the authoritative source of data for technical manuals,

training.

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Uses of the Digital Product ModelRear Admiral Eccles affirmation

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• Provide guidance for the acquisition of product model and related technical data.• This instruction applies to product models and technical data derived directly from

the product model such as engineering analysis, bills of material, and drawings.• This instruction implements the DON POLICY ON DIGITAL PRODUCT/TECHNICAL

DATA issued in 2004 and the NAVSEA SHIP DESIGN AND TOOLS GOALS issued in 2008.

• This instruction does not specify a format explicitly, but instead requires Navy stakeholders to reach consensus on the definition and delivery of product model data.

• Balances cost, data utility, and data exchange technology.

NAVSEA Instruction 9040.3AAcquisition and Management of Product Model and other Technical Data

Ship and ship system design, acquisition, and fleet support activities shall procure and accept product model data in accordance with ISO 10303, Standard for the Exchange of Product model data (STEP) format, native Computer Aided Design (CAD) files, and/or Leading Edge Architecture for Prototyping Systems (LEAPS) format. This should be based on solutions that provide the best technical and cost performance as determined by a NAVSEA business case analysis.

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Product Model Data Definition and ExchangeA NAVSEA perspective

A two level approach for the exchange of product model data

First level :

Second level :

Support configuration management, logistics support, provisioning, spares, and repairs through the use of STEP for geometry, product structure, non graphical attributes, and to manage configuration items of the as-built / as-maintained ship.

Deliver the as-designed class model of 1) molded forms suitable for defining a general arrangement2) scantling level of detail of structure to support structural (and

other types of) analysis3) functional distributed systems model (i.e. path, components, and

connections)4) compartmentation, including accesses, opening, and tightness5) plates, stiffeners, brackets, collars, and other structural

components as parts6) distributed system components, fittings, and equipment as parts.

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The Digital Product Model shall be delivered in both a native and neutral format. The neutral format shall comply with the Department of the Navy Policy on Digital Product/Technical Data dated 23 October 2004. ISO 10303 Part 214 shall be used to define the Digital Product Model geometry. ISO 10303 Part 239 shall be used to define product structure, the relationship between objects, and configuration management data. The Builder shall provide a list in the PPM1 of each data exchange specification (DEX) that will be used to support the ISO Part 239 exchange. In the event the contractor can demonstrate the need for an additional DEX, then the contractor shall develop a NAVSEA approved DEX.

1 Process and Procedures Manual

Implementing the PolicyShips Specification 098 – 3D Product Model

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NATIVE ShipConstructor® DATA

EXTRACTED NON-GRAPHICAL ATTRIBUTES

EXTRACTED GEOMETRY

Archiving Ship Product Model DataMining ShipConstructor Product Model Definition

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A testcase framework for PLCS-IFTest case ultimate depth and breadth

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Distribution Statement A : Approved For Public Release; Distribution is unlimited

A testcase framework for PLCS-IFA small distributed system

Electrical Components ● Mechanical Components ● Piping ComponentsSystems ● Subsystems ● Assemblies

Page 11: A  testcase  framework for the PLCS-IF

Distribution Statement A : Approved For Public Release; Distribution is unlimited

Monitor Gate Valve condition

1. Locate all of the valves in fuel oil service2. Determine the date the valve was placed in service3. If the valve is more than 20 years old flag it to be replaced4. If the valve is between 10 and 20 years old, issue a service

bulletin to inspect for signs of seepage and report back5. For all reports that indicate seepage, schedule valve

replacement during the next scheduled maintenance period6. Determine the next time the ship has maintenance scheduled7. For all reports that indicate no problem make a notation in the

ships maintenance logs

Attributes to support USE case

ShipHull NumberDate put in serviceLocationAvailability

System AttributesType (SWBS?)Fluid Type

Part AttributesSeal typeModel numberSerial numberSeal materialInstall dateOverhaul dateSize

The useful life of gate valves used in fuel oil service is 20 years. Gate valves between 10 and 20 years old should be inspected periodically, and their condition reported. This is not a critical issue so the repair does not need to be made immediately. However, planning is required to purchase new seals or replacement valves depending on their condition. From the product model repository

A testcase framework for PLCS-IFA sample USE case

(Product Operational Information)

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The test case was developed to exercise • Parts• Assemblies• Systems• Configuration Management• Multiple product structures• Workflow• Revision control • Parts placed in a system• Parts placed in an assembly• Assemblies placed in a system• Systems divided into subsystems

A testcase framework for PLCS-IFScope like stuff

The test case includes information required to • Design the system• Develop the work package to assemble a system• Purchase components• Maintain the system• Repair the system• Operate the system

Provide sufficient data to develop a product model and collect all the “other technical data” necessary to perform the aforementioned task. The test shall be of sufficient breadth and depth that the output products required to support the aforementioned tasks can be generated automatically from the product data. Additionally, there will be sufficient information to associate the other technical data to the product data and to allow simultaneous configuration management of the product data and other technical data.

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A testcase framework for PLCS-IFBill of Material (well almost)

Instance Component Item Name T0 T1 T2 R00 R01 R02 R10 R11 R12 R20 R21 R22 pipe end x pipe end y pipe end z lengthE01 Tank, 700 gallon 48 0 0 0 -1 0 1 0 0 0 0 1E02 10 GPM Pump and Motor Unit 120.898 47.38 -4.07 0 1 0 -1 0 0 0 0 1E03 Tank, 200 gallon 209.12 54 12 0 1 0 -1 0 0 0 0 1E04 Breaker Box, 300 amp 183 72 36 1 0 0 0 1 0 0 0 1

E05 Strainer Y, 150lb, 1in, FF 104.502 30 3 1 0 0 0 1 0 0 0 1F01 Elbow, SCH40, BW, 1in 193.06 30 3 1 0 0 0 0 -1 0 1 0F02 Elbow, SCH40, BW, 1in 196.06 30 51 -1 0 0 0 0 -1 0 -1 0J01 Gasket 1/16in, 150lb, 1in 50.56 30 3 1 0 0 0 1 0 0 0 1J10 Flange, 300lb, FF, 1in 130.945 30 3 1 0 0 0 1 0 0 0 1J11 Flange, 150lb, FF, 1in 142.82 30 3 -1 0 0 0 -1 0 0 0 1J12 Gasket 1/16in, 150lb, 1in 142.883 30 3 -1 0 0 0 1 0 0 0 1J13 Gasket 1/16in, 150lb, 1in 146.823 30 3 1 0 0 0 1 0 0 0 1J14 Flange, 150lb, FF, 1in 146.885 30 3 1 0 0 0 1 0 0 0 1J15 Flange, 150lb, FF, 1in 206.498 30 51 -1 0 0 0 1 0 0 0 1J16 Gasket 1/16in, 150lb, 1in 206.56 30 51 -1 0 0 0 1 0 0 0 1J02 Flange, 150lb, FF, 1in 50.623 30 3 1 0 0 0 1 0 0 0 1J03 Flange, 150lb, FF, 1in 106.88 30 3 -1 0 0 0 1 0 0 0 1J04 Gasket 1/16in, 150lb, 1in 106.943 30 3 -1 0 0 0 1 0 0 0 1J05 Gasket 1/16in, 150lb, 1in 110.883 30 3 1 0 0 0 1 0 0 0 1J06 Flange, 150lb, FF, 1in 110.945 30 3 1 0 0 0 1 0 0 0 1J07 Flange, 300lb, FF, 1in 122.82 30 3 -1 0 0 0 -1 0 0 0 1J08 Gasket 1/16 in, 300lb, 1in 122.82 30 3 1 0 0 0 1 0 0 0 1J09 Gasket 1/16 in, 300lb, 1in 130.883 30 3 1 0 0 0 1 0 0 0 1P01 Pipe, SCH40, BW, 1in 50.883 30 3 1 0 0 0 1 0 0 0 1 106.62 30 3 1.41572P02 Pipe, SCH40, BW, 1in 111.205 30 3 1 0 0 0 1 0 0 0 1 122.56 30 3 0.288417P03 Pipe, SCH40, BW, 1in 131.205 30 3 1 0 0 0 1 0 0 0 1 142.56 30 3 0.288417P04 Pipe, SCH40, BW, 1in 147.145 30 3 1 0 0 0 1 0 0 0 1 193.126 30 3 1.167917P05 Pipe, SCH40, BW, 1in 194.56 30 4.5 0 0 -1 0 1 0 1 0 0 194.56 30 49.5 1.143P06 Pipe, SCH40, BW, 1in 196.06 30 51 1 0 0 0 1 0 0 0 1 206.238 30 51 0.258521P07 Pipe, SCH40, BW, 1in 50.883 30 3 1 0 0 0 1 0 0 0 1 100.177 30 3 1.252068V01 Valve Gate, 150lb, 1in, FF 106.943 30 3 1 0 0 0 1 0 0 0 1V02 Valve Gate, 150lb, 1in, FF 142.883 30 3 -1 0 0 0 1 0 0 0 1W01 Wire 121.383 42.69 0.38 1 0 0 0 1 0 0 0 1 192 75 36 4.140683

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A testcase framework for PLCS-IFSystems of Parts

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A testcase framework for PLCS-IFAssemblies of Parts

Page 16: A  testcase  framework for the PLCS-IF

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A testcase framework for PLCS-IFParts Libaries

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A testcase framework for PLCS-IFCatalogs

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A testcase framework for PLCS-IFDrawings

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A testcase framework for PLCS-IFOrdering Information

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A testcase framework for PLCS-IFConfiguration Management

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A testcase framework for PLCS-IFConfiguration Management

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distPort_22

J03J04

V01

J06

J05

distPort_20

distPort_62distPort_63

distPort_23

distPort_24

distPort_25Component Name Instance Node Node Unique ID xPart yPart zPart xModel yModel zModel

Flange, 150lb, FF, 1in J03 J03 Port 1 distPort_20 0 0 0 106.88 30 3

Flange, 150lb, FF, 1in J03 J03 Port 2 distPort_21 0.26 0 0 106.62 30 3

Gasket 1/16in, 150lb, 1in J04 J04 Port 1 distPort_22 0 0 0 106.943 30 3

Gasket 1/16in, 150lb, 1in J04 J04 Port 2 distPort_23 0.0625 0 0 106.8805 30 3

Gasket 1/16in, 150lb, 1in J05 J05 Port 1 distPort_24 0 0 0 110.883 30 3

Gasket 1/16in, 150lb, 1in J05 J05 Port 2 distPort_25 0.0625 0 0 110.9455 30 3

Flange, 150lb, FF, 1in J06 J06 Port 1 distPort_26 0 0 0 110.945 30 3

Flange, 150lb, FF, 1in J06 J06 Port 2 distPort_27 0.26 0 0 111.205 30 3

Valve Gate, 150lb, 1in, FF V01 V01 Port 1 distPort_62 0 0 0 106.943 30 3

Valve Gate, 150lb, 1in, FF V01 V01 Port 2 distPort_63 3.94 0 0 110.883 30 3

distJoint_5

distJoint_6

distJoint_8

distJoint_7

From To Node 1 UID Node 2 UID Unique ID Connection Description

J03 Port 1 J04 Port 2 distPort_20 distPort_23 distJoint_5 J03 Port 1 - J04 Port 2J04 Port 1 V01 Port 1 distPort_22 distPort_62 distJoint_6 J04 Port 1 - V01 Port 1V01 Port 2 J05 Port 1 distPort_63 distPort_24 distJoint_7 V01 Port 2 - J05 Port 1J05 Port 2 J06 Port 1 distPort_25 distPort_26 distJoint_8 J05 Port 2 - J06 Port 1

distPort_26

A testcase framework for PLCS-IFConnections and Connectors

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A testcase framework for PLCS-IFConnections and Connectors

P06 Port 2J15 Port 2

J15P06

Page 24: A  testcase  framework for the PLCS-IF

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A testcase framework for PLCS-IFPorts

Component Name Instance Name Port Node Descriptive Name Node Unique ID xPart yPart zPart xModel yModel zModel1 Tank, 700 gallon E01 1 E01 Port 1 distPort_1 -2.3000 24.0000 69.0000 24.0000 -2.3000 69.00002 Tank, 700 gallon E01 2 E01 Port 2 distPort_2 30.0000 -2.3000 3.0000 50.3000 30.0000 3.00003 Tank, 200 gallon E03 1 E03 Port 1 distPort_3 24.0000 -2.3000 39.0000 206.8200 30.0000 51.00004 Tank, 200 gallon E03 2 E03 Port 2 distPort_4 42.0000 38.3000 3.0000 247.4200 12.0000 15.00005 Tank, 200 gallon E03 3 E03 Port 3 distPort_5 24.0000 38.3000 3.0000 247.4200 30.0000 15.00006 Tank, 200 gallon E03 4 E03 Port 4 distPort_6 6.0000 38.3000 3.0000 247.4200 48.0000 15.00007 Gasket 1/16in, 150lb, 1in J01 1 J01 Port 1 distPort_7 0.0000 0.0000 0.0000 50.5600 30.0000 3.00008 Gasket 1/16in, 150lb, 1in J01 2 J01 Port 2 distPort_8 0.0625 0.0000 0.0000 50.6225 30.0000 3.00009 Gasket 1/16in, 150lb, 1in J02 1 J02 Port 1 distPort_9 0.0000 0.0000 0.0000 50.5600 30.0000 3.000010 Gasket 1/16in, 150lb, 1in J02 2 J02 Port 2 distPort_10 0.2600 0.0000 0.0000 50.8200 30.0000 3.000011 10 GPM Pump and Motor Unit E02 1 E02 Port 1 distPort_11 17.3800 1.9840 7.0730 122.8820 30.0000 3.000012 10 GPM Pump and Motor Unit E02 2 E02 Port 2 distPort_12 17.3800 9.9840 7.0730 130.8820 30.0000 3.000013 Gasket 1/16in, 150lb, 1in J03 1 J03 Port 1 distPort_13 0.0000 0.0000 0.0000 50.5600 30.0000 3.000014 Gasket 1/16in, 150lb, 1in J03 2 J03 Port 2 distPort_14 0.0625 0.0000 0.0000 50.6225 30.0000 3.000015 Gasket 1/16in, 150lb, 1in J04 1 J04 Port 1 distPort_15 0.0000 0.0000 0.0000 50.5600 30.0000 3.000016 Gasket 1/16in, 150lb, 1in J04 2 J04 Port 2 distPort_16 0.2600 0.0000 0.0000 50.8200 30.0000 3.000017 Gasket 1/16in, 150lb, 1in J05 1 J05 Port 1 distPort_17 0.0000 0.0000 0.0000 50.5600 30.0000 3.000018 Gasket 1/16in, 150lb, 1in J05 2 J05 Port 2 distPort_18 0.0625 0.0000 0.0000 50.6225 30.0000 3.000019 Gasket 1/16in, 150lb, 1in J06 1 J06 Port 1 distPort_19 0.0000 0.0000 0.0000 50.5600 30.0000 3.000020 Gasket 1/16in, 150lb, 1in J06 2 J06 Port 2 distPort_20 0.2600 0.0000 0.0000 50.8200 30.0000 3.000021 Gasket 1/16in, 150lb, 1in J07 1 J07 Port 1 distPort_21 0.0000 0.0000 0.0000 50.5600 30.0000 3.000022 Gasket 1/16in, 150lb, 1in J07 2 J07 Port 2 distPort_22 0.0625 0.0000 0.0000 50.6225 30.0000 3.000023 Gasket 1/16in, 150lb, 1in J08 1 J08 Port 1 distPort_23 0.0000 0.0000 0.0000 50.5600 30.0000 3.000024 Gasket 1/16in, 150lb, 1in J08 2 J08 Port 2 distPort_24 0.2600 0.0000 0.0000 50.8200 30.0000 3.000025 Gasket 1/16in, 150lb, 1in J09 1 J09 Port 1 distPort_25 0.0000 0.0000 0.0000 50.5600 30.0000 3.000026 Gasket 1/16in, 150lb, 1in J09 2 J09 Port 2 distPort_26 0.0625 0.0000 0.0000 50.6225 30.0000 3.000027 Flange, 300lb, FF, 1in J10 1 J10 Port 1 distPort_27 0.0000 0.0000 0.0000 130.9450 30.0000 3.000028 Flange, 300lb, FF, 1in J10 2 J10 Port 2 distPort_28 0.2600 0.0000 0.0000 131.2050 30.0000 3.000029 Flange, 150lb, FF, 1in J11 1 J11 Port 1 distPort_29 0.0000 0.0000 0.0000 142.8200 30.0000 3.000030 Flange, 150lb, FF, 1in J11 2 J11 Port 2 distPort_30 0.0625 0.0000 0.0000 142.7575 30.0000 3.000031 Gasket 1/16in, 150lb, 1in J12 1 J12 Port 1 distPort_31 0.0000 0.0000 0.0000 142.8830 30.0000 3.000032 Gasket 1/16in, 150lb, 1in J12 2 J12 Port 2 distPort_32 0.0625 0.0000 0.0000 142.8205 30.0000 3.000033 Gasket 1/16in, 150lb, 1in J13 1 J13 Port 1 distPort_33 0.0000 0.0000 0.0000 146.8230 30.0000 3.000034 Gasket 1/16in, 150lb, 1in J13 2 J13 Port 2 distPort_34 0.0625 0.0000 0.0000 146.8855 30.0000 3.000035 Flange, 150lb, FF, 1in J14 1 J14 Port 1 distPort_35 0.0000 0.0000 0.0000 146.8850 30.0000 3.000036 Flange, 150lb, FF, 1in J14 2 J14 Port 2 distPort_36 0.2600 0.0000 0.0000 147.1450 30.0000 3.000037 Flange, 150lb, FF, 1in J15 1 J15 Port 1 distPort_37 0.0000 0.0000 0.0000 206.4980 30.0000 51.000038 Flange, 150lb, FF, 1in J15 2 J15 Port 2 distPort_38 0.2600 0.0000 0.0000 206.2380 30.0000 51.000039 Gasket 1/16in, 150lb, 1in J16 1 J16 Port 1 distPort_39 0.0000 0.0000 0.0000 206.5600 30.0000 51.000040 Gasket 1/16in, 150lb, 1in J16 2 J16 Port 2 distPort_40 0.0625 0.0000 0.0000 206.4975 30.0000 51.000041 Elbow, SCH40, BW, 1in F01 1 F01 Port 1 distPort_41 0.0000 0.0000 0.0000 193.0600 30.0000 3.000042 Elbow, SCH40, BW, 1in F01 2 F01 Port 2 distPort_42 1.5000 1.5000 0.0000 194.5600 30.0000 4.500043 Elbow, SCH40, BW, 1in F02 1 F02 Port 1 distPort_43 0.0000 0.0000 0.0000 196.0600 30.0000 51.000044 Elbow, SCH40, BW, 1in F02 2 F02 Port 2 distPort_44 1.5000 1.5000 0.0000 194.5600 30.0000 49.500045 Pipe, SCH40, BW, 1in P01 1 P01 Port 1 distPort_45 0.0000 0.0000 0.0000 50.8830 30.0000 3.000046 Pipe, SCH40, BW, 1in P01 2 P01 Port 2 distPort_46 55.737 0 0 106.6200 30.0000 3.000047 Pipe, SCH40, BW, 1in P02 1 P02 Port 1 distPort_47 0.0000 0.0000 0.0000 111.2050 30.0000 3.000048 Pipe, SCH40, BW, 1in P02 2 P02 Port 2 distPort_48 11.355 0 0 122.5600 30.0000 3.000049 Pipe, SCH40, BW, 1in P03 1 P03 Port 1 distPort_49 0.0000 0.0000 0.0000 131.2050 30.0000 3.000050 Pipe, SCH40, BW, 1in P03 2 P03 Port 2 distPort_50 11.355 0 0 142.5600 30.0000 3.000051 Pipe, SCH40, BW, 1in P04 1 P04 Port 1 distPort_51 0.0000 0.0000 0.0000 147.1450 30.0000 3.000052 Pipe, SCH40, BW, 1in P04 2 P04 Port 2 distPort_52 45.981 0 0 193.1260 30.0000 3.000053 Pipe, SCH40, BW, 1in P05 1 P05 Port 1 distPort_53 0.0000 0.0000 0.0000 194.5600 30.0000 4.500054 Pipe, SCH40, BW, 1in P05 2 P05 Port 2 distPort_54 45 0 0 194.5600 30.0000 49.500055 Pipe, SCH40, BW, 1in P06 1 P06 Port 1 distPort_55 0.0000 0.0000 0.0000 196.0600 30.0000 51.000056 Pipe, SCH40, BW, 1in P06 2 P06 Port 2 distPort_56 10.178 0 0 206.2380 30.0000 51.000057 Valve Gate, 150lb, 1in, FF V01 1 V01 Port 1 distPort_57 0.0000 0.0000 0.0000 106.9430 30.0000 3.000058 Valve Gate, 150lb, 1in, FF V01 2 V01 Port 2 distPort_58 3.94 0 0 110.8830 30.0000 3.000059 Valve Gate, 150lb, 1in, FF V02 1 V02 Port 1 distPort_59 0.0000 0.0000 0.0000 142.8825 30.0000 3.000060 Valve Gate, 150lb, 1in, FF V02 2 V02 Port 2 distPort_60 3.94 0 0 138.9425 30.0000 3.000061 Wire W01 1 W01 Port 1 distPort_61 0 0 0 121.3830 42.6900 0.380062 Wire W01 2 W01 Port 2 distPort_62 70.617 32.31 35.62 192.0000 75.0000 36.000063 Breaker Box, 300 amp E04 1 E04 Port 1 distPort_63 9 3 0 192.0000 75.0000 36.000064 Pipe, SCH40, BW, 1in P07 1 P07 Port 1 distPort_64 0 0 0 50.8830 30.0000 3.000065 Pipe, SCH40, BW, 1in P07 1 P07 Port 1 distPort_65 49.294 0 0 100.1770 30.0000 3.0000