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Automatic gridding of turbomachinery meshes is a huge win, as is getting accurate results quickly enough.  We don’t have to do too much, it just works.  

TT101 - Introduction to Code Wand and Code Leo

Bob Ni provides an introduction to the ADS mesh generator Wand and flow solver Leo. This video tutorial outlines the key features of Wand and Leo and how they can be applied to a wide range of turbomachinery design problems.

ADS Technical Overview :: Introduction to Code Wand and Code Leo
Total time: (43:19)
 
ADS Technical Overview :: Introduction to Code Wand and Code Leo [01] Introduction (4:48)
ADS Technical Overview :: Code Wand - Dense OHH Mesh Topology [02] Wand - Dense OHH Mesh Topology (5:49)
ADS Technical Overview :: Code Wand - Advanced Clearance Meshing [03] Wand - Advanced Clearance Meshing (2:19)
ADS Technical Overview :: Code Wand - Turbomachinery Blading Applications [04] Wand - Turbomachinery Blading Applications (2:41)
ADS Technical Overview :: Code Leo - Architecture [05] Leo - Architecture (6:59)
ADS Technical Overview :: Code Leo - Convergence Acceleration [06] Leo - Convergence Acceleration (3:51)
ADS Technical Overview :: Code Leo - Turbomachinery Capabilities [07] Leo - Turbomachinery Capabilities (4:03)
ADS Technical Overview :: 2D Cascade Analysis [08] Uses - 2D Cascade Analysis (0:40)
ADS Technical Overview :: Endwall Secondary Flow Analysis [09] Uses - Endwall Secondary Flow Analysis (2:11)
ADS Technical Overview :: Minimum Artificial Damping [10] Uses - Minimum Artificial Damping (2:10)
ADS Technical Overview :: 3D Multi Stage Steady Analysis [11] Uses - 3D Multi Stage Steady Analysis (0:29)
ADS Technical Overview :: Centrifugal Compressor Analysis [12] Uses - Centrifugal Compressor Analysis (0:57)
ADS Technical Overview :: 3D Time Accurate Analysis [13] Uses - 3D Time Accurate Analysis (1:22)
ADS Technical Overview :: Unstructured Mesh Analysis [14] Uses - Unstructured Mesh Analysis (0:46)
ADS Technical Overview :: Conjugate Heat Transfer [15] Uses - Conjugate Heat Transfer (1:27)
ADS Technical Overview :: Summary [16] Summary (2:36)
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