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  1. Suppress Blade FEA
  2. Show the fluid geometry, wireframe.
  3. Create named selections
    1. Inlet
    2. Inlet-Top
    3. Outlet
    4. Blade (select all then control click the surfaces not wanted)
    5. Periodic 1 (one of the quadrilateral surfacesurfaces). 
    6. Periodic 2 (the other quadrilateral surface). 
    7. Fluid

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Global Mesh Controls

We start by applying specifying some global mesh settings which means that these settings will be applied to the whole mesh altogether. 

Note: There have been changes to the Mesher since this video was recorded. Please see the notes under the video.

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<iframe width="640" height="360" src="//www.youtube.com/embed/ShSXdbABclo" frameborder="0" allowfullscreen></iframe>

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  1. Automatically optimized for CFD and FLUENT, tetrahedral cells.
  2. Change use advanced size function to proximity and curvature. It makes it deal with curves better, lower skewness.
  3. Change relevance center to medium

 

Note
titleVersion Changes (ANSYS 19.1 or later)

Skip the relevance center settings shown in this video. Your "Details of Mesh" window should look like the image below:

Image Added

 

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Local Mesh Controls

After applying controls to the whole mesh, we now apply mesh settings to specific areas of our geometry. 

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Note
titleANSYS 19.1 Users:

If your mesh fails when you insert a sphere of influence, skip this step. Instead, change the growth rate to 1.15 from the default of 1.2. To do this, highlight Mesh in the tree, then look under sizingSizing.

 

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Mesh Metrics

We now show you how to judge the quality of your mesh. This is an extremely important step because a bad mesh can lead to bad results!

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  1. Skewness and orthogonal quality are the two most important. Skewness better for CFD.
  2. Look at the skewness mesh metric under details of mesh.
  3. Click on different ranges to see the specific cells in that range

 

Note
titleVersion Changes (ANSYS 18.2 or later)

In newer versions, the Mesh Metrics can be viewed under Quality instead of under Statistics:

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It is generally advised to keep the minimum orthogonality greater than 0.15 and maximum skewness lower than 0.95. Having bad cells or elements can lead to incorrect simulation results. However, these are general guide rules and depend on the physics solved or where the cells are located. The following tables can help you gauge the quality of your mesh. 

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