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March 4, 2008, 08:15 |
Vorticity Direction
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#1 |
Guest
Posts: n/a
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Hi all,
I am simulating an oscillating cylinder and observing the vorticities. Does anyone know how to view the velocity in which the clock wise and anti clockwise vorticity direction gives you diff colour in the contour plot? This will make it easy to differentiate between positive and negative vorticity direction. Sham |
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March 4, 2008, 22:47 |
Re: Vorticity Direction
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#2 |
Guest
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Hello,
Your question is not entirely clear to me. However, if you want to look at the direction in which the vortices are rotating (i.e. whether clockwise or counter-clockwise) why not plot the velocity vectors? |
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March 7, 2008, 00:58 |
Re: Vorticity Direction
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#3 |
Guest
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Hi Sham, I'm assuming your problem is 2D, where fluent only provides the vorticity magnitude. To get around this you can define a Custom Field Function (see sect 30.5.1 of the user guide) for the vorticity which is du/dy - dv/dx. John
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March 22, 2008, 03:41 |
Re: Vorticity Direction
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#4 |
Guest
Posts: n/a
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John,
Could you pls explain a little bit more how can I use the Custom Field Function to define the vorticity direction and show it in diff colour? I am modelling a 2D cylinder in free stream. Sham. |
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March 24, 2008, 16:15 |
Re: Vorticity Direction
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#5 |
Guest
Posts: n/a
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Hi Sham,
Go to the "Define" menu, pick "Custom Field Function". Then in the "Field Functions" drop-down box, pick "Derivatives", select "dX-Velocity/dy" from the second drop-down box, click "Select", then the "-" button, then select "dY-Velocity/dx" and click "Select". Now choose a name for your new variable (e.g. "Vorticity-signed"), then click "Define". When you go to plot contours, choose "Custom Field Functions", and your new variable will be available. Note that most of the vorticity will be in the boundary layer, so you will probably have to take it off "Auto Range" and pick some lower values to see anything at all in the wake. Positive values represent rotation in one direction, negative values in the other. Hope that helps, John |
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March 24, 2008, 23:08 |
Re: Vorticity Direction
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#6 |
Guest
Posts: n/a
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John,
Thanks a lot. It works. Sham. |
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May 19, 2011, 16:27 |
VORTICITY calculation in unstructured grid?
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#7 |
New Member
anil
Join Date: Jul 2010
Location: india
Posts: 3
Rep Power: 15 |
I have one doubt regarding the vorticity calculation in FLUENT. In a forum i found the vorticity calculation is by du/dy-dv/dx. But this is valid for structured mesh only according to theory and how can it be valid for unstructured grids. Is there any method (Algorithm) by which Fluent calculates the vorticity for unstructured grid?.
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April 23, 2019, 05:05 |
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#8 | |
New Member
mkhan
Join Date: Oct 2018
Posts: 12
Rep Power: 7 |
Quote:
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April 23, 2019, 11:47 |
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#9 |
Senior Member
Lucky
Join Date: Apr 2011
Location: Orlando, FL USA
Posts: 5,676
Rep Power: 66 |
The vorticity is defined mathematically the same way regardless of mesh. What differs is how you would actually go and calculate the gradient field. Fluent is an unstructured solver anyway, so it never matters. Whether your mesh is structured or not, Fluent treats it like an unstructured mesh. |
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April 24, 2019, 00:04 |
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#10 | |
New Member
mkhan
Join Date: Oct 2018
Posts: 12
Rep Power: 7 |
Quote:
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April 24, 2019, 14:05 |
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#11 | |
Senior Member
Lucky
Join Date: Apr 2011
Location: Orlando, FL USA
Posts: 5,676
Rep Power: 66 |
Quote:
on notes or on cells? On nodes, there's all sorts of wonky interpolation that happens. |
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April 25, 2019, 00:47 |
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#12 |
New Member
mkhan
Join Date: Oct 2018
Posts: 12
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April 25, 2019, 05:35 |
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#13 |
New Member
mkhan
Join Date: Oct 2018
Posts: 12
Rep Power: 7 |
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January 9, 2016, 02:43 |
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#14 |
New Member
Rajendra Singh
Join Date: Aug 2015
Posts: 16
Rep Power: 10 |
To, John Young
Thanks!!! It is helpful. |
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May 24, 2016, 06:01 |
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#15 |
New Member
anonymous
Join Date: Nov 2015
Posts: 4
Rep Power: 10 |
Thank You John
I lost my 3 weeks finding how to do this.. finally you made my day |
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