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CFD 102: ANSYS CFX Introductory

Price:
$2,640 USD per person

Length:
Public Sessions: 4 days
Online Sessions: 8 sessions

Prerequisites:
A technical education and background is recommended but an engineering degree is not required.

Overview:
The complete Intro to ANSYS CFX training is a four-day training. On day 1 the training will focus on geometry creation and specifically focus on ANSYS SpaceClaim. If you know that you will be using ANSYS SpaceClaim, then you should definitely plan on attending day 1 of training. Even if you don't plan on using ANSYS SpaceClaim, this day of training could still be helpful since we will discuss some things to think about when creating geometries for CFD analyses and we will also talk about the geometry cleanup tools in ANSYS SpaceClaim.

On day 2 the training will focus on creating your CFD meshes using ANSYS Meshing. If you will be using another program to create your CFD meshes, you may still find this day of training to be helpful because we will talk about some of the important things that you need to consider when creating CFD meshes.

On day 3 and 4 the training will focus on the CFX solver and how to setup, solve and post-process your results from ANSYS CFX.

Please use this form to indicate your interest in this course. By doing so you are not committed to attending.

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ANSYS CFX Introductory Agenda:

Day 1 - Spaceclaim

Module 1: Introduction to ANSYS

Module 2: Workbench Introduction

  • Workshop: Mixing Tee

Module 3: Overview of CFD Process and Workflow

Module 4: SpaceClaim Essentials

  • Workshop: Manifold: Geometry

Day 2 - Meshing

Module 5: ANSYS Meshing Essentials

  • Workshop: Manifold: Meshing

Module 6: GUI Workflow

  • Workshop: Manifold

Module 7: Basic SpaceClaim Operations

  • Workshop: Mixing Elbow: Geometry

Module 8: Global Mesh Controls

  • Workshop: Mixing Elbow: Meshing

Module 9: Setting Up Physics

  • Workshop: Mixing Elbow

Day 3

Module 10: Geometry Handling and Repair

  • Workshop: Tube Bundle: Geometry

Module 11: Local Mesh Controls

  • Workshop: Tube Bundle: Meshing

Module 12: Post-Processing

  • Workshop: Tube Bundle Post-Processing

Module 13: Pull, Move, Fill & Blend

  • Workshop: Mixing Elbow: Geometry

Module 14: Mesh Methods and Selective Meshing

  • Workshop: Mixing Elbow: Meshing

Module 15: Solving

  • Workshop: Mixing Elbow Solver Variations

Day 4 - cfx

Module 16: Driving Dimensions and Parameters, Components and Assemblies

  • Workshop: Valve Geometry and Meshing

Module 17: Parameters and Design Points

  • Workshop: Valve Parametric Study

Module 18: Best Practice Guidelines

  • Workshop: Airfoil - Best Practices Study

Module 19: Turbulence

Module 20: Heat Transfer

  • Workshop: Electronics Cooling

Module 21: Transient Flow Modeling

  • Workshop: Vortex Shedding

Recommended Follow-Up Topics

(dependent upon your interests and applications)

  • Combustion Modeling
  • Turbulence Modeling
  • User Defined Functions
  • Multiphase Modeling
  • Heat Transfer Modeling
  • Dynamic Mesh Modeling
  • Acoustics Modeling
  • Rotating Machinery Modeling
  • Fluid Structure Interaction (FSI) Modeling