•Introduction to the ANSYS Meshing
Application
•Meshing Requirements for Different Physics
•ANSYS Meshing Workflow
•Meshing Methods for 3D and 2D geometries
•Workshop 2.1
–Automatic Meshing for a Multibody Part
–Program Controlled Inflation
Transferring Mesh to CFX or FLUENT
•Parametric: Parameters drive system
•Persistent: Model updates passed through system
•Highly-automated: Baseline simulation w/limited input
•Flexible: Able to add controls to influence resulting mesh (complete
control over model/simulation)
•Physics aware: Key off physics to automate modeling and
simulation throughout system
•Adaptive architecture: Open system that can be adapted to a
customer’s process
–CAD neutral, meshing neutral, solver neutral, etc.
Purpose
–For both CFD
(fluid) and FEA (solid) modelling, the software performs the computations at a
range of discrete locations within the domain.
–The purpose of
meshing is to decompose the solution domain into an appropriate number of
locations for an accurate result.
–The basic
building-blocks for a 3D mesh are:
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