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Mastering ANSYS CFD: From Zero to Expert (2026 Edition)

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  • 17,807 Students
  • Updated 1/2026
4.1
(2,426 Ratings)
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Course Information

Registration period
Year-round Recruitment
Course Level
Study Mode
Duration
6 Hour(s) 27 Minute(s)
Language
English
Taught by
Sijal Ahmed
Rating
4.1
(2,426 Ratings)

Course Overview

Mastering ANSYS CFD: From Zero to Expert (2026 Edition)

44+ Hours of CFD Training: Geometry, Meshing, Turbulence, Heat Transfer, and Validation

Master CFD with ANSYS – From Zero to Expert!

Take your engineering skills to the next level with Mastering ANSYS CFD, a complete program designed to take you from beginner to confident CFD engineer. With 44+ hours of hands-on video content, over 100 downloadable resources, and real-world projects, this course gives you the knowledge and practical experience to apply CFD with confidence in both academia and industry.

Unlike tutorials that focus only on software clicks, this course emphasizes understanding the physics, numerical methods, and validation behind every simulation. You’ll learn to create geometries in ANSYS Workbench and DesignModeler, generate high-quality structured, unstructured, and hybrid meshes, set up simulations in Fluent and CFX, and conduct advanced post-processing to analyze velocity, pressure, turbulence, and heat transfer. Every simulation is tied to analytical solutions or experimental data, so you can trust your results and gain real-world expertise.

Explore a wide range of practical case studies: laminar and turbulent pipe flows, heat exchangers, Swirler effects, flow separation control with dimples, NACA 4412 airfoil aerodynamics, and mixing processes. Learn mesh independence studies, validation techniques, and advanced post-processing that prepare you for research, publications, or industrial projects.

This course is perfect for students, researchers, and engineers who want to move beyond basic CFD usage and think like a CFD engineer. With lifetime access, all updates included, and dedicated Q&A support, you can learn at your own pace and build professional, validated expertise.

By the end, you won’t just be running simulations—you’ll be interpreting results, optimizing designs, and making informed engineering decisions. Start today and master CFD, validate your results, and transform your engineering career!


Course Content

  • 35 section(s)
  • 202 lecture(s)
  • Section 1 Introduction to the course and how to use course effectively
  • Section 2 Laminar pipe flow with theory and validation using ANSYS workbench (New)
  • Section 3 Turbulent pipe flow CFD analytsis
  • Section 4 Nozzle Aerodynamics – Compressible Flow with CFD
  • Section 5 Workshop 2 : NACA 0012 geometry and domain creation in design modeller
  • Section 6 Workshop 3 : NACA 0012 Mapped or Hexa meshing in ANSYS Meshing
  • Section 7 Workshop 4: NACA 0012 CFD using Ansys Fluent
  • Section 8 Workshop 5: NACA 0012 CFD using Ansys CFX
  • Section 9 NACA 4412 CFD analysis in ANSYS Workbench (Fluent, DM, CFDPost, ANSYS Meshing)
  • Section 10 WS 6 - Laminar pipe flow in Fluent
  • Section 11 WS7 : 3D CFD analysis of triple Wedge in Fluent and ICEMCFD
  • Section 12 CFD simulation of mixing elbow - Introduction and problem description
  • Section 13 CFD simulation of mixing elbow - Geometry generation in design moeler
  • Section 14 CFD simulation of mixing elbow - Mesh generation in ANSYS meshing
  • Section 15 CFD simulation of mixing elbow : Computational setup in Fluent
  • Section 16 CFD of mixing elbow: Post processing in Fluent
  • Section 17 CFD of mixing elbow: Post processing in CFD-Post
  • Section 18 Mixing Elbow with Swirler - Part B
  • Section 19 Passive flow separation control in mixing elbow
  • Section 20 Flow in sudden double contractions with Parametric study of pipe length
  • Section 21 Hexa meshing of sudden double contraction pipe with 90 deg bend
  • Section 22 Solution of double sudden double contraction pipe in Fluent
  • Section 23 Sudden double pipe contraction - Post processing of CFD results in CFD-Pos
  • Section 24 Sudden double pipe contraction - Parametric study
  • Section 25 How to import airfoil coordinate in spaceclaim
  • Section 26 One way FSI ( fluid structure interaction) of power plant Cooling Tower
  • Section 27 Tank Emptying CFD simulation using VOF method
  • Section 28 Turbulent pipe flow and Nusselt number determination using CFD
  • Section 29 CFD analysis and validation of seperated flow in 90 deg bend
  • Section 30 CFD analysis of flow around ciylinder at Re = 150 and vortex shedding
  • Section 31 Velocity profile for pipe and channel flows using UDFs inFluent
  • Section 32 3D parabolic velocity profile for pipe flow using UDF in Fluent
  • Section 33 2D velocity profile in pipe using expression (without UDF)
  • Section 34 3D parabolic velocity using expression in Fluent
  • Section 35 CFD analysis of NACA 2412 Airfoil (3D) in Fluent (New)

What You’ll Learn

  • How to understand problem and get important parameters., Setup problem using different CFD tools such as Fluent, CFX, ICEMCFD, Design modeller, Ansys meshing etc, Comparison of experimental or analytical data or available high quality CFD data to your own CFD analysis, Should be able to solve any CFD problem from starting to final results.


Reviews

  • A
    AHMED MAHAD JAMA
    4.5

    yes it was good as someone who works as cfd engineer.

  • I
    Inchara H.S
    5.0

    its really good

  • K
    Karthik S.H
    5.0

    really good teaching

  • p
    pulkit
    1.0

    I cant even Understand what you are teaching and it is not organized

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