Certification Course in Advanced ANSYS for EV Engineering
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Welcome to the Course!
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Module 1: Heat Transfer Analysis in ANSYSTopic 1: Heat Transfer Analysis – Overview8m 25sTopic 2: Understanding Heat Transfer Basics – Conduction, Convection, and Radiation16m 3sTopic 3: Heat Transfer Simulation with ANSYS22m 47sTopic 4: Steady State Convection Heat Transfer Analysis with ANSYS17m 47sTopic 5: Steady State Conduction Heat Transfer Analysis with ANSYS – Part 117m 4sTopic 6: Steady State Conduction Heat Transfer Analysis with ANSYS – Part 222m 56sTopic 7: Transient Conduction Heat transfer Analysis with ANSYS27m 5sTopic 8: Radiation Heat Transfer Analysis with ANSYS Part 115m 16sTopic 9: Radiation Heat Transfer Analysis with ANSYS Part 211m 48sTopic 10: Battery Thermal Simulation in ANSYS – Part 124m 42sTopic 11: Battery Thermal Simulation in ANSYS – Part 237m 51sTopic 12: Post-Processing, Results Interpretation, and Validation in ANSYS15m 5s
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Module 2: Modal Analysis in ANSYSTopic 1: Exploring the Fundamentals of Modal Analysis24m 50sTopic 2: Setting Up a Model for Modal Analysis in ANSYS – Geometry Creation to Defining Materials Properties9m 13sTopic 3: Meshing the Geometry for Modal Analysis16m 40sTopic 4: Setting Up Boundary Conditions & Constraints for Modal Analysis11m 8sTopic 5: Solving for Natural Frequencies & Mode Shapes in Modal Analysis9m 48sTopic 6: Post-Processing & Interpreting Modal Analysis Results7m 10sTopic 7: Case Study – Modal Analysis of a Mounting Plate23m 34s
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Module 3: Computational Fluid Dynamics in ANSYSTopic 1: Exploring CFD – Definition, Importance & Applications15m 27sTopic 2: Introduction to Fluid Dynamics32m 52sTopic 3: Understanding Fluid Properties – Density, Pressure, Viscosity, Surface Tension & Temperature24m 52sTopic 4: Fluid Flow Classifications25m 21sTopic 5: CFD Workflow Explained49m 32sTopic 6: Performing CFD Analysis in ANSYS Fluent – Part 133m 33sTopic 7: Performing CFD Analysis in ANSYS Fluent – Part 226m 38s
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Module 4: ANSYS Case StudiesTopic 1: Structural Analysis: Lower Control Arm – Part 1 Introduction17m 48sTopic 2: Structural Analysis: Lower Control Arm – Part 2 Geometry Creation19m 27sTopic 3: Structural Analysis: Lower Control Arm – Part 3 Meshing & Boundary Conditions10m 18sTopic 4: Structural Analysis: Lower Control Arm – Part 4 Post Processing & Result Interpretation12m 42sTopic 5: Vibration Analysis: Battery Pack – Part 1 Theoretical Overview36m 51sTopic 6: Vibration Analysis: Battery Pack – Part 2 Types of Vibration Testing27m 23sTopic 7: Vibration Analysis: Battery Pack – Part 3 Geometry Creation & Simulation Setup29m 35sTopic 8: Vibration Analysis: Battery Pack – Part 4 Post Processing & Results Interpretation20m 59sTopic 9: Drop Test Analysis: Battery Pack – Part 1 Introduction & Theory23m 26sTopic 10: Drop Test Analysis: Battery Pack – Part 2 Implicit & Explicit Analysis14m 3sTopic 11: Drop Test Analysis: Battery Pack – Part 3 Simulation Set Up & Results18m 24sTopic 12: Thermal Analysis: EV Motor – Part 1 Overview & Geometry Setup47m 47sTopic 13: Thermal Analysis: EV Motor – Part 2 Simulation Set Up & Results28m 46s
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DIY Projects:
The Certification Course in Advanced ANSYS for EV Engineering is designed to help you master essential simulation techniques for electric vehicle applications.
Learners will explore comprehensive heat transfer analyses—including conduction, convection, and radiation—and apply these skills to battery thermal management. Additionally, the course covers modal analysis and CFD to analyze vibrations, fluid flow, and cooling systems.
Through practical case studies such as structural analysis, battery vibration and drop tests, and EV motor thermal simulations, the participants will develop the expertise to solve complex engineering challenges. By the end of the course, you will have deepened your knowledge in EV simulation and design.
⚠️ Recommended Prerequisite
To get the most out of this advanced course, we recommend first completing our foundational course: “Certification Course in ANSYS: From Fundamentals to Structural Analysis.”That course covers key concepts like FEA/FEM theory, geometry cleanup, meshing, material selection, boundary conditions, and basic structural analysis—all of which provide a solid base for the topics covered here.
What's included
- 4 Modules.
- 39 Lectures.
- 14.24 hours of Video Content.
- 1 Project Assignment.
- Certification of Completion.