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Ansys Aeromechanics of Turbomachinery Blades (CFD)

Course Overview

In this course, students will learn the baisc theory and application methods of Aerodynamics of Turbomachinery Blades. They will learn how to apply the 10x faster Transient Blade Row (TBR) methods for transient Blade Flutter Turbomachinery analysis and the new 10x faster Harmonic Analysis hybrid frequency/time solution method. Students must have experience of Ansys CFX for rotating machinery for the training to be effective.


  • A technical education and background in fluid mechanics is recommended but not mandatory. An engineering degree is not required.
  • Completion of the CFX Getting Started course is required.
  • Completion of the Ansys CFX Rotating Machinery Modeling is required.
  • Completion of module 4 - Moving and Deforming Meshes of the Ansys CFX FSI course is recommended.

Target Audience

Fluids Engineers, Thermal Engineers and Aerodynamics Engineers

Teaching Method

Lectures and computer practical sessions to validate acquired knowledge. A training certificate is provided to all attendees who complete the course.

Learning Pathway


Learning Outcome

Upon the successful completion of this course, you will be able to:

  • Use a streamlined end-to-end workflow for setting up, running and post-processing a Blade Flutter analysis using Ansys Structural Modal analysis and Ansys CFX.


 Available Dates

Currently, no training dates available

Learning Options

Training materials for this course are available with a Ansys Learning Hub Subscription. If there is no active public schedule available, private training can be arranged. Please contact us.


This is a 1-day classroom course covering both tutorials and workshops. For virtual training, this course is covered over 2 x 2-hour session, tutorials only. 

Day 1

  • Module 01: Introduction to ANSYS & Workbench
  • Module 02: Aeromechanics ANSYS Simulation Overview
  • Module 03: Transient Blade Row Modeling
  • Module 04: Blade Flutter
  • Workshop 04.1: Rotor Blade Flutter (Part 1 & Part 2)