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Geometry (Artery without plaques) (Link)
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width | 600 |
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url | http://www.youtube.com/watch?v=FR8jDB73U_A |
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height | 370 |
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Geometry (Plaque configuration #1);(Link)
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width | 600 |
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url | http://www.youtube.com/watch?v=2JkNMU0WLWc |
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height | 370 |
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Geometry (Plaque configuration #2) (Link)
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width | 600 |
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url | http://www.youtube.com/watch?v=-m3y-tCYi_c |
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height | 370 |
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Below is a mesh we obtained by playing with these settings. This mesh resolves the separated flow behind the plaque better than the default mesh. It can be further improved though! You could start by changing the "edge sizings" in the left branch.
Streamlines
The following videos show how to plot streamlines using the CFD Post post-processor included in ANSYS Workbench. First, we plot streamlines emanating from the the inlet.
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width | 600 |
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url | http://www.youtube.com/watch?v=hsAJpBRQPkY |
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height | 370 |
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The streamlines emanating from the inlet do not include those in the recirculating region or the "deadwater" region. To see the streamlines in the recirculating region, we:
- Create points along a line within the recirculating region
- Plot streamlines emanating from these points
Widget Connector |
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width | 600 |
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url | http://www.youtube.com/watch?v=IyJyuNxO7pg |
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height | 370 |
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Wall Shear
The following video shows how to plot wall shear along the left wall of the bifurcating artery.
Widget Connector |
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width | 600 |
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url | https://www.youtube.com/watch?v=OKhkffR4V3A |
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height | 370 |
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Pressure Gradient
The procedure to create a contour plot of the pressure gradient is shown in the video below.
Widget Connector |
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width | 600 |
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url | https://www.youtube.com/watch?v=fSeuv88FNMM |
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height | 370 |
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