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ANSYS Thermal Analysis Training

The effects of heat and thermal management of structures is more and more critical as performance limits are pushed further by the need to have lighter, smaller and more efficient designs. Convection, radiation and conduction loads are obvious, but the need to include the effect of power losses and thermal energy from friction and external sources such as pipe flows means that analysts need to have more tools at their disposal to simulate thermal models accurately.

Topics include:

  • Introduction to Thermal Analysis
  • Ansys Thermal Analysis
  • Geometry Modelling
  • Basic meshing 
  • Visualizing mesh
  • Case setup
  • Steady and transient Thermal analysis
  • Assigning Boundary conditions
  • Solvers and schemes
  • Series and parallel solving
  • Running case 
  • Viewing and plotting results in cfd post


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Course Code: CRS-N-0044175

Course Booking

$498.00

Course Date

Course Time

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Course Cancellation/Reschedule Policy

We reserve the right to cancel or re-schedule the course due to unforeseen circumstances. If the course is cancelled, we will refund 100% to participants.
Note the venue of the training is subject to changes due to class size and availability of the classroom.
Note the minimal class size to start a class is 3 Pax.


Training Grant and Subsidy

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Course Details

Day 1

Module 1: Introduction and Basics

  • Thermal Analysis
  • Computational approach 
  • Steady and transient cases
  • Different analysis approaches
  • Ansys Thermal analysis


Module 2: Geometry and Meshing

  • What is meshing?
  • Types of Mesh
  • Types of meshing tools (Ansys Mesh, ICEM CFD)
  • Simple 2D and 3D mesh


Module 3: Preprocessing

  • Importing mesh
  • Visualizing mesh
  • Assigning BC’s
  • Material setup
  • Linear and Steady-state Thermal analysis
  • Nonlinear and Transient Thermal analysis

Day 2


Module 4: Simulation

  • Solvers and schemes
  • Time step setup
  • Residual control and plot
  • Check case setup
  • Solving in series and parallel


Module 5: Post-processing

  • Reading data 
  • Visualizing results
  • Contours and plots
  • Generating video (transient case)
  • Calculate final results

Who Should Attend

  • Aerospace Engineers
  • Fluid Dynamics Researchers
  • Building & Construction Engineers

Prerequisite

Basic knowledge of thermodynamics is assumed

Trainers

ASNSYS TrainerSivamoorthy Kanagalingam’s scope of work focuses on numerical analysis and uses Fluent for flow and thermal analysis. Computational fluid dynamics has prominent applications in the fields of Aerospace, Automobile, Mechanical, Oil and Gas, Civil, Urban development, Environment etc. Siva has been working on CFD since 2010 and completed many projects in Aerospace and Mechanical sectors. He is still an active user of Ansys CFX, Fluent, ICEM CFD, OpenFOAM and currently involved in multiphase, dynamic analysis.

Sivamoorthy Kanagalingam is a passionate Aerospace Engineer with interest and experience in Aerodynamics, Fluid Dynamics, Fluid Structure Interaction, Computational Fluid Dynamics

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