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b10ab746e5985971.png
Bent Pipe
Are there dead zones (stagnant flow areas) visible in the simulation?
Binary
1
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
2445a5e54b4145f8.png
Bent Pipe
Are there dead zones (stagnant flow areas) visible in the simulation?
Binary
1
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
07201b258496b590.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
76664f5224ec2373.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
9530ada00782d9af.png
Bent Pipe
The flow is only in one direction
Binary
4
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
6418c873b3511a98.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
d14dce649ebbbb01.png
Bent Pipe
The flow is only in one direction
Binary
4
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
ad898aa0086b1520.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
0c3f615fec88c02d.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
af3726dc1d52c047.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
0ece59697e4e585d.png
Bent Pipe
What is the axis of symmetry?
Multiple Choice
10
None/Multiple
[ "X", "Y", "Z", "None/Multiple" ]
3
Not supported with pagination yet
image
c6b02cdc1df9a504.png
Bent Pipe
How would you characterize the flow speed relative to sound speed in water?
Multiple Choice
12
Subsonic (Mach < 0.8)
[ "Subsonic (Mach < 0.8)", "Transonic (0.8 < Mach < 1.2)", "Supersonic (Mach > 1.2)", "N/A" ]
0
Not supported with pagination yet
image
a75b1e6a806bedb6.png
Bent Pipe
Where is the maximum [velocity/pressure/temperature] located in the flow field?
Spatial
16
B
[ "A", "B", "C", "D" ]
1
Not supported with pagination yet
image
18a03d26650bfb25.png
Bent Pipe
What is the axis of symmetry?
Multiple Choice
10
None/Multiple
[ "X", "Y", "Z", "None/Multiple" ]
3
Not supported with pagination yet
image
f01474f0ebb9b436.png
Bent Pipe
How would you characterize the flow speed relative to sound speed in water?
Multiple Choice
12
Subsonic (Mach < 0.8)
[ "Subsonic (Mach < 0.8)", "Transonic (0.8 < Mach < 1.2)", "Supersonic (Mach > 1.2)", "N/A" ]
0
Not supported with pagination yet
image
7d70a0d78fdb5e75.png
Bent Pipe
Where is the maximum [velocity/pressure/temperature] located in the flow field?
Spatial
16
D
[ "A", "B", "C", "D" ]
3
Not supported with pagination yet
image
3758eae5f86eabc7.png
Bent Pipe
What is the axis of symmetry?
Multiple Choice
10
None/Multiple
[ "X", "Y", "Z", "None/Multiple" ]
3
Not supported with pagination yet
image
8172d12ecd0aeba5.png
Bent Pipe
How would you characterize the flow speed relative to sound speed in water?
Multiple Choice
12
Subsonic (Mach < 0.8)
[ "Subsonic (Mach < 0.8)", "Transonic (0.8 < Mach < 1.2)", "Supersonic (Mach > 1.2)", "N/A" ]
0
Not supported with pagination yet
image
0e434008cbaf0ff7.png
Bent Pipe
Where is the maximum [velocity/pressure/temperature] located in the flow field?
Spatial
16
C
[ "A", "B", "C", "D" ]
2
Not supported with pagination yet
image
e3ed704f7de860cf.png
Bent Pipe
Where is the minimum [velocity/pressure/temperature] located in the flow field?
Spatial
17
B
[ "A", "B", "C", "D" ]
1
Not supported with pagination yet
image
96767db9931d8c62.png
Bent Pipe
Where is the minimum [velocity/pressure/temperature] located in the flow field?
Spatial
17
A
[ "A", "B", "C", "D" ]
0
Not supported with pagination yet
image
3b3cec351a29c2ed.png
Bent Pipe
Where is the minimum [velocity/pressure/temperature] located in the flow field?
Spatial
17
D
[ "A", "B", "C", "D" ]
3
Not supported with pagination yet
image
ca0af2d48a79e941.png
Bent Pipe
What is the approximate range (maximum-minimum) of values in the displayed contour plot?
Multiple Choice
18
Less than one order of magnitude (max < 10× min)
[ "Less than one order of magnitude (max < 10× min)", "One to two orders of magnitude (10× min < max < 100× min)", "Two to three orders of magnitude (100× min < max < 1000× min)", "More than three orders of magnitude (max > 1000× min)" ]
0
Not supported with pagination yet
image
d3c87b7035d5a6f2.png
Bent Pipe
Flow is dominantly along which axis (If axis is not visible, select between axial and radial as X and Y respectively)?
Multiple Choice
20
Z axis
[ "X", "Y", "Z", "Complex Multidirectional" ]
2
Not supported with pagination yet
image
92c3e0526a83dfcc.png
Bent Pipe
What is the approximate range (maximum-minimum) of values in the displayed contour plot?
Multiple Choice
18
Less than one order of magnitude (max < 10× min)
[ "Less than one order of magnitude (max < 10× min)", "One to two orders of magnitude (10× min < max < 100× min)", "Two to three orders of magnitude (100× min < max < 1000× min)", "More than three orders of magnitude (max > 1000× min)" ]
0
Not supported with pagination yet
image
345550c1c0fe16ce.png
Bent Pipe
Flow is dominantly along which axis (If axis is not visible, select between axial and radial as X and Y respectively)?
Multiple Choice
20
Z axis
[ "X", "Y", "Z", "Complex Multidirectional" ]
2
Not supported with pagination yet
image
7720d5c3f56e4b1a.png
Bent Pipe
What is the approximate range (maximum-minimum) of values in the displayed contour plot?
Multiple Choice
18
Less than one order of magnitude (max < 10× min)
[ "Less than one order of magnitude (max < 10× min)", "One to two orders of magnitude (10× min < max < 100× min)", "Two to three orders of magnitude (100× min < max < 1000× min)", "More than three orders of magnitude (max > 1000× min)" ]
0
Not supported with pagination yet
image
7f50dc6b7336fc74.png
Bent Pipe
Flow is dominantly along which axis (If axis is not visible, select between axial and radial as X and Y respectively)?
Multiple Choice
20
Z axis
[ "X", "Y", "Z", "Complex Multidirectional" ]
2
Not supported with pagination yet
image
9dcb817c9a34b945.png
Bent Pipe
Are there dead zones (stagnant flow areas) visible in the simulation?
Binary
1
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
bb01f3dbd5abd08c.png
Bent Pipe
Are there dead zones (stagnant flow areas) visible in the simulation?
Binary
1
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
1d1288bc2503f5b9.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
2251438fa7d6426b.png
Bent Pipe
Are there dead zones (stagnant flow areas) visible in the simulation?
Binary
1
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
6abd18e5315266b9.png
Bent Pipe
The flow is only in one direction
Binary
4
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
ad9d8f63644d6160.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
41d67e0143bf081c.png
Bent Pipe
The flow is only in one direction
Binary
4
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
ab08465a0124ea7c.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
a0d87604409af145.png
Bent Pipe
The flow is only in one direction
Binary
4
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
8ac734003947d124.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
378121abb26ad61f.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
0711339ba514d4e8.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
33d7167cb2b64782.png
Bent Pipe
What is the axis of symmetry?
Multiple Choice
10
None/Multiple
[ "X", "Y", "Z", "None/Multiple" ]
3
Not supported with pagination yet
image
e810d6125f2146d7.png
Bent Pipe
How would you characterize the flow speed relative to sound speed in water?
Multiple Choice
12
Subsonic (Mach < 0.8)
[ "Subsonic (Mach < 0.8)", "Transonic (0.8 < Mach < 1.2)", "Supersonic (Mach > 1.2)", "N/A" ]
0
Not supported with pagination yet
image
82601db6acb249bc.png
Bent Pipe
Where is the maximum [velocity/pressure/temperature] located in the flow field?
Spatial
16
C
[ "A", "B", "C", "D" ]
2
Not supported with pagination yet
image
8c0a396913149055.png
Bent Pipe
What is the axis of symmetry?
Multiple Choice
10
None/Multiple
[ "X", "Y", "Z", "None/Multiple" ]
3
Not supported with pagination yet
image
4b65cade06a1f87b.png
Bent Pipe
How would you characterize the flow speed relative to sound speed in water?
Multiple Choice
12
Subsonic (Mach < 0.8)
[ "Subsonic (Mach < 0.8)", "Transonic (0.8 < Mach < 1.2)", "Supersonic (Mach > 1.2)", "N/A" ]
0
Not supported with pagination yet
image
eaca8295f551adb9.png
Bent Pipe
What is the axis of symmetry?
Multiple Choice
10
None/Multiple
[ "X", "Y", "Z", "None/Multiple" ]
3
Not supported with pagination yet
image
445f97b5f8fe6640.png
Bent Pipe
How would you characterize the flow speed relative to sound speed in water?
Multiple Choice
12
Subsonic (Mach < 0.8)
[ "Subsonic (Mach < 0.8)", "Transonic (0.8 < Mach < 1.2)", "Supersonic (Mach > 1.2)", "N/A" ]
0
Not supported with pagination yet
image
2ab6cee6b9187203.png
Bent Pipe
Where is the maximum [velocity/pressure/temperature] located in the flow field?
Spatial
16
A
[ "A", "B", "C", "D" ]
0
Not supported with pagination yet
image
6088b8ac4ba4037b.png
Bent Pipe
Where is the maximum [velocity/pressure/temperature] located in the flow field?
Spatial
16
B
[ "A", "B", "C", "D" ]
1
Not supported with pagination yet
image
d6b02a92a784c496.png
Bent Pipe
Where is the minimum [velocity/pressure/temperature] located in the flow field?
Spatial
17
C
[ "A", "B", "C", "D" ]
2
Not supported with pagination yet
image
aea9da37a8f27417.png
Bent Pipe
Where is the minimum [velocity/pressure/temperature] located in the flow field?
Spatial
17
C
[ "A", "B", "C", "D" ]
2
Not supported with pagination yet
image
0d778bfa9a7c523b.png
Bent Pipe
Where is the minimum [velocity/pressure/temperature] located in the flow field?
Spatial
17
A
[ "A", "B", "C", "D" ]
0
Not supported with pagination yet
image
be5f9678c03e587d.png
Bent Pipe
What is the approximate range (maximum-minimum) of values in the displayed contour plot?
Multiple Choice
18
Less than one order of magnitude (max < 10× min)
[ "Less than one order of magnitude (max < 10× min)", "One to two orders of magnitude (10× min < max < 100× min)", "Two to three orders of magnitude (100× min < max < 1000× min)", "More than three orders of magnitude (max > 1000× min)" ]
0
Not supported with pagination yet
image
189e51ef33785c62.png
Bent Pipe
Flow is dominantly along which axis (If axis is not visible, select between axial and radial as X and Y respectively)?
Multiple Choice
20
Z axis
[ "X", "Y", "Z", "Complex Multidirectional" ]
2
Not supported with pagination yet
image
8eb9fc01bf2145cd.png
Bent Pipe
Are there dead zones (stagnant flow areas) visible in the simulation?
Binary
1
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
43ad72b45beebf90.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
371e7efb6b6df9f8.png
Bent Pipe
Are there dead zones (stagnant flow areas) visible in the simulation?
Binary
1
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
0f339e907650d5e9.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
f36cde521b496cf1.png
Bent Pipe
The flow is only in one direction
Binary
4
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
f9232dcc51a2c485.png
Bent Pipe
The flow is only in one direction
Binary
4
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
e4956437525a837e.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
d5aa0415eb81a088.png
Bent Pipe
The flow is only in one direction
Binary
4
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
f1de0c78d1a4ee03.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
8545fdd18db0f88c.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
bc526ee9762606be.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
2d1296533041ffec.png
Bent Pipe
What is the axis of symmetry?
Multiple Choice
10
None/Multiple
[ "X", "Y", "Z", "None/Multiple" ]
3
Not supported with pagination yet
image
54323c7488555ff8.png
Bent Pipe
How would you characterize the flow speed relative to sound speed in water?
Multiple Choice
12
Subsonic (Mach < 0.8)
[ "Subsonic (Mach < 0.8)", "Transonic (0.8 < Mach < 1.2)", "Supersonic (Mach > 1.2)", "N/A" ]
0
Not supported with pagination yet
image
9db46cf6334c9833.png
Bent Pipe
Where is the maximum [velocity/pressure/temperature] located in the flow field?
Spatial
16
D
[ "A", "B", "C", "D" ]
3
Not supported with pagination yet
image
4a0142642f7a2233.png
Bent Pipe
What is the axis of symmetry?
Multiple Choice
10
None/Multiple
[ "X", "Y", "Z", "None/Multiple" ]
3
Not supported with pagination yet
image
822fea502f6f96a7.png
Bent Pipe
How would you characterize the flow speed relative to sound speed in water?
Multiple Choice
12
Subsonic (Mach < 0.8)
[ "Subsonic (Mach < 0.8)", "Transonic (0.8 < Mach < 1.2)", "Supersonic (Mach > 1.2)", "N/A" ]
0
Not supported with pagination yet
image
35e0c39831e2fefe.png
Bent Pipe
Where is the maximum [velocity/pressure/temperature] located in the flow field?
Spatial
16
B
[ "A", "B", "C", "D" ]
1
Not supported with pagination yet
image
84f1452d10ff901b.png
Bent Pipe
What is the axis of symmetry?
Multiple Choice
10
None/Multiple
[ "X", "Y", "Z", "None/Multiple" ]
3
Not supported with pagination yet
image
f8d6bdb18e7652df.png
Bent Pipe
How would you characterize the flow speed relative to sound speed in water?
Multiple Choice
12
Subsonic (Mach < 0.8)
[ "Subsonic (Mach < 0.8)", "Transonic (0.8 < Mach < 1.2)", "Supersonic (Mach > 1.2)", "N/A" ]
0
Not supported with pagination yet
image
34e93c89daa529ff.png
Bent Pipe
Where is the maximum [velocity/pressure/temperature] located in the flow field?
Spatial
16
B
[ "A", "B", "C", "D" ]
1
Not supported with pagination yet
image
2fc62cc5cc085ee3.png
Bent Pipe
Where is the minimum [velocity/pressure/temperature] located in the flow field?
Spatial
17
A
[ "A", "B", "C", "D" ]
0
Not supported with pagination yet
image
5dadcdd34000fedc.png
Bent Pipe
Where is the minimum [velocity/pressure/temperature] located in the flow field?
Spatial
17
C
[ "A", "B", "C", "D" ]
2
Not supported with pagination yet
image
9af38c7e96f66c9b.png
Bent Pipe
Where is the minimum [velocity/pressure/temperature] located in the flow field?
Spatial
17
A
[ "A", "B", "C", "D" ]
0
Not supported with pagination yet
image
a0c7da7f6703048e.png
Bent Pipe
What is the approximate range (maximum-minimum) of values in the displayed contour plot?
Multiple Choice
18
Less than one order of magnitude (max < 10× min)
[ "Less than one order of magnitude (max < 10× min)", "One to two orders of magnitude (10× min < max < 100× min)", "Two to three orders of magnitude (100× min < max < 1000× min)", "More than three orders of magnitude (max > 1000× min)" ]
0
Not supported with pagination yet
image
7f989c37944f5d8f.png
Bent Pipe
Flow is dominantly along which axis (If axis is not visible, select between axial and radial as X and Y respectively)?
Multiple Choice
20
Z axis
[ "X", "Y", "Z", "Complex Multidirectional" ]
2
Not supported with pagination yet
image
b50e80ec181a2ddd.png
Bent Pipe
What is the approximate range (maximum-minimum) of values in the displayed contour plot?
Multiple Choice
18
Less than one order of magnitude (max < 10× min)
[ "Less than one order of magnitude (max < 10× min)", "One to two orders of magnitude (10× min < max < 100× min)", "Two to three orders of magnitude (100× min < max < 1000× min)", "More than three orders of magnitude (max > 1000× min)" ]
0
Not supported with pagination yet
image
c33a0e0144d374ba.png
Bent Pipe
Flow is dominantly along which axis (If axis is not visible, select between axial and radial as X and Y respectively)?
Multiple Choice
20
Z axis
[ "X", "Y", "Z", "Complex Multidirectional" ]
2
Not supported with pagination yet
image
5695cc9d706a659c.png
Bent Pipe
What is the approximate range (maximum-minimum) of values in the displayed contour plot?
Multiple Choice
18
Less than one order of magnitude (max < 10× min)
[ "Less than one order of magnitude (max < 10× min)", "One to two orders of magnitude (10× min < max < 100× min)", "Two to three orders of magnitude (100× min < max < 1000× min)", "More than three orders of magnitude (max > 1000× min)" ]
0
Not supported with pagination yet
image
9006124764e5b155.png
Bent Pipe
Flow is dominantly along which axis (If axis is not visible, select between axial and radial as X and Y respectively)?
Multiple Choice
20
Z axis
[ "X", "Y", "Z", "Complex Multidirectional" ]
2
Not supported with pagination yet
image
9cb3e7f8f5d05b28.png
Bent Pipe
What is the approximate range (maximum-minimum) of values in the displayed contour plot?
Multiple Choice
18
Less than one order of magnitude (max < 10× min)
[ "Less than one order of magnitude (max < 10× min)", "One to two orders of magnitude (10× min < max < 100× min)", "Two to three orders of magnitude (100× min < max < 1000× min)", "More than three orders of magnitude (max > 1000× min)" ]
0
Not supported with pagination yet
image
72fea553aac7414a.png
Bent Pipe
Flow is dominantly along which axis (If axis is not visible, select between axial and radial as X and Y respectively)?
Multiple Choice
20
Z axis
[ "X", "Y", "Z", "Complex Multidirectional" ]
2
Not supported with pagination yet
image
39585a451673691b.png
Bent Pipe
Are there dead zones (stagnant flow areas) visible in the simulation?
Binary
1
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
1690dcf29159fa5c.png
Bent Pipe
What is the approximate range (maximum-minimum) of values in the displayed contour plot?
Multiple Choice
18
Less than one order of magnitude (max < 10× min)
[ "Less than one order of magnitude (max < 10× min)", "One to two orders of magnitude (10× min < max < 100× min)", "Two to three orders of magnitude (100× min < max < 1000× min)", "More than three orders of magnitude (max > 1000× min)" ]
0
Not supported with pagination yet
image
a18c84faa1a9bed5.png
Bent Pipe
Flow is dominantly along which axis (If axis is not visible, select between axial and radial as X and Y respectively)?
Multiple Choice
20
Z axis
[ "X", "Y", "Z", "Complex Multidirectional" ]
2
Not supported with pagination yet
image
bbde325939c3f790.png
Bent Pipe
Are there dead zones (stagnant flow areas) visible in the simulation?
Binary
1
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
63b6162df13f47dd.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
b9269cb9eec44b4c.png
Bent Pipe
Are there dead zones (stagnant flow areas) visible in the simulation?
Binary
1
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
59e4fab1cdf58a17.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
75ba01b78bc4012a.png
Bent Pipe
Is the flow field symmetric across any axis?
Binary
2
No
[ "Yes", "No" ]
1
Not supported with pagination yet
image
ea2cc6e8e0e0545f.png
Bent Pipe
The flow is only in one direction
Binary
4
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
b435cdf0193d59a6.png
Bent Pipe
The flow is only in one direction
Binary
4
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
43469b3d58a5dd35.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
Not supported with pagination yet
image
4c3a287e3d95f819.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
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image
1e17e3f0eda4d810.png
Bent Pipe
Are there regions of low velocity and low pressure?
Binary
5
Yes
[ "Yes", "No" ]
0
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9c4b6504686ad126.png
Bent Pipe
What is the axis of symmetry?
Multiple Choice
10
None/Multiple
[ "X", "Y", "Z", "None/Multiple" ]
3
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Bent Pipe
How would you characterize the flow speed relative to sound speed in water?
Multiple Choice
12
Subsonic (Mach < 0.8)
[ "Subsonic (Mach < 0.8)", "Transonic (0.8 < Mach < 1.2)", "Supersonic (Mach > 1.2)", "N/A" ]
0
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OpenSeeSimE-Fluid: Engineering Simulation Visual Question Answering Benchmark

Dataset Summary

OpenSeeSimE-Fluid is a large-scale benchmark dataset for evaluating vision-language models on computational fluid dynamics (CFD) simulation interpretation tasks. It contains approximately 98,000 question-answer pairs across parametrically-varied fluid simulations including turbulent flow, heat transfer, and complex flow patterns.

Purpose

While vision-language models (VLMs) have shown promise in general visual reasoning, their effectiveness for specialized engineering simulation interpretation remains unknown. This benchmark enables:

  • Statistically robust evaluation of VLM performance on CFD visualizations
  • Assessment across multiple reasoning capabilities (captioning, reasoning, grounding, relationship understanding)
  • Evaluation using different question formats (binary classification, multiple-choice, spatial grounding)

Dataset Composition

Statistics

  • Total instances: ~98,000 question-answer pairs
  • Simulation types: 5 fluid models (Bent Pipe, Converging Nozzle, Mixing Pipe, Heat Sink, Heat Exchanger)
  • Parametric variations: 1,024 unique instances per base model (4^5 parameter combinations)
  • Question categories: Captioning, Reasoning, Grounding, Relationship Understanding
  • Question types: Binary, Multiple-choice, Spatial grounding
  • Media formats: Both static images (1920×1440 PNG) and videos (Originally Extracted at: 200 frames, 40 fps, 5 seconds (some exceptions apply for longer fluid flow development))

Simulation Parameters

Each base model varies across 5 parameters with 4 values each:

Bent Pipe: Bend Angle, Turn Radius, Pipe Diameter, Fluid Viscosity, Fluid Velocity
Converging Nozzle: Pipe Diameter, Front Chamfer Length, Back Chamfer Length, Inner Fillet Radius, Fluid Velocity
Mixing Pipe: Pipe 1 Diameter, Pipe 2 Diameter, Fillet Radius, Fluid 1 Velocity, Fluid 2 Velocity
Heat Sink: Fin Thickness, Sink Length, Fin Spacing, Fin Number, Fluid Velocity
Heat Exchanger: Tube Diameter, Fin Diameter, Fin Thickness, Fin Spacing, Fluid Velocity

Question Distribution

  • Binary Classification: 40% (yes/no questions about dead zones, symmetry, flow direction, etc.)
  • Multiple-Choice: 30% (4-option questions about flow regime, axis of symmetry, magnitude ranges, etc.)
  • Spatial Grounding: 30% (location-based questions with labeled regions A/B/C/D)

Data Collection Process

Simulation Generation

  1. Base models sourced from Ansys Fluent tutorial files
  2. Parametric automation via PyFluent and PyGeometry interfaces
  3. Systematic variation across 5 parameters with 4 linearly-spaced values
  4. All simulations solved with validated turbulence models and convergence criteria

Ground Truth Extraction

Automated extraction eliminates human annotation costs and ensures consistency:

  • Statistical Analysis: Direct queries on velocity, pressure, and temperature fields
  • Distribution Analysis: Dead zone detection via velocity magnitude thresholds (1% of maximum)
  • Physics-Based Classification: Mach number calculations for flow regime classification
  • Spatial Localization: Color-based region generation with computer vision algorithms

All ground truth derived from numerical simulation results rather than visual interpretation.

Preprocessing and Data Format

Image Processing

  • Resolution: 1920×1440 pixels
  • Format: PNG with lossless compression
  • Standardized viewing orientations: front, back, left, right, top, bottom, isometric
  • Consistent color mapping: rainbow gradients (red=maximum, blue=minimum)
  • Visualization types: contour plots (pressure, velocity magnitude) and vector plots (velocity vectors, streamlines)

Video Processing

  • 200 frames at 40 fps (5 seconds duration); some exceptions apply for longer fluid flow development
  • Pathlines showing steady-state flow solution
  • H.264 compression at 1920×1440 resolution

Data Fields

{
    'file_name': str,           # Unique identifier
    'source_file': str,         # Base simulation model
    'question': str,            # Question text
    'question_type': str,       # 'Binary', 'Multiple Choice', or 'Spatial'
    'question_id': int,         # Question identifier (1-20)
    'answer': str,              # Ground truth answer
    'answer_choices': List[str], # Available options
    'correct_choice_idx': int,  # Index of correct answer
    'image': Image,             # PIL Image object (1920×1440)
    'video': Video,             # Video frames
    'media_type': str          # 'image' or 'video'
}

Labels

All labels are automatically generated from simulation numerical results:

  • Binary questions: "Yes" or "No"
  • Multiple-choice: Single letter (A/B/C/D) or descriptive option
  • Spatial grounding: Region label (A/B/C/D) corresponding to labeled visualization locations

Dataset Splits

  • Test split only: ~98K instances
  • No train/validation splits provided (evaluation benchmark, not for model training)
  • Representative sampling across all simulation types and question categories

Intended Use

Primary Use Cases

  1. Benchmark evaluation of vision-language models on CFD simulation interpretation
  2. Capability assessment across visual reasoning dimensions (captioning, spatial grounding, relationship understanding)
  3. Transfer learning analysis from general-domain to specialized technical visual reasoning

Out-of-Scope Use

  • Real-time engineering decision-making without expert validation
  • Safety-critical applications without human oversight
  • Generalization to simulation types beyond fluid dynamics

Limitations

Technical Limitations

  • Objective tasks only: Excludes subjective engineering judgments requiring domain expertise
  • Single physics domain: Fluid dynamics only (see OpenSeeSimE-Structural for structural mechanics)
  • Ansys-specific: Visualizations generated using Ansys Fluent rendering conventions
  • Steady-state focus: Videos show pathlines of steady-state solutions, not transient phenomena
  • 2D visualizations: All inputs are 2D projections of 3D simulations (or 2D Cross Sectional Planes)

Known Biases

  • Color scheme dependency: Questions exploit default color gradient conventions
  • Geometry bias: Selected simulation types may not represent full diversity of CFD applications
  • Flow regime bias: Limited supersonic cases due to parameter range constraints
  • View orientation bias: Standardized camera positions may not capture all critical flow features

Ethical Considerations

Responsible Use

  • Models evaluated on this benchmark should NOT be deployed for safety-critical engineering decisions without expert validation
  • Automated interpretation should augment, not replace, human engineering expertise
  • Users should verify that benchmark performance translates to their specific simulation contexts

Data Privacy

  • All simulations have no proprietary or confidential engineering data
  • No personal information collected
  • Publicly available tutorial files used as base models

Environmental Impact

  • Dataset generation required significant CPU computational resources with parallel processing
  • Consider environmental cost of large-scale model evaluation on this benchmark
  • CFD simulations are computationally intensive (hours per case on multi-core workstations)

License

MIT License - Free for academic and commercial use with attribution

Citation

If you use this dataset, please cite:

@article{ezemba2024opensesime,
  title={OpenSeeSimE: A Large-Scale Benchmark to Assess Vision-Language Model Question Answering Capabilities in Engineering Simulations},
  author={Ezemba, Jessica and Pohl, Jason and Tucker, Conrad and McComb, Christopher},
  year={2025}
}

AI Usage Disclosure

Dataset Generation

  • Simulation automation: Python scripts with Ansys PyFluent interface
  • Ground truth extraction: Automated computational protocols (no AI involvement)
  • Quality validation: Expert oversight of automated extraction procedures
  • No generative AI used in dataset creation, labeling, or curation

Visualization Generation

  • Ansys Fluent rendering engine (deterministic, physics-based)
  • Standardized color mapping and camera controls
  • No AI-based image generation or enhancement

Contact

Authors: Jessica Ezemba (jezemba@andrew.cmu.edu), Jason Pohl, Conrad Tucker, Christopher McComb
Institution: Department of Mechanical Engineering, Carnegie Mellon University

Acknowledgments

  • Ansys for providing simulation software and tutorial files
  • Carnegie Mellon University for computational resources
  • Reviewers and domain experts who validated the automated extraction protocols

Version: 1.0
Last Updated: December 2025
Status: Complete and stable

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