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CFD analysis and validation of ONERA M6 in ANSYS Workbench

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Sijal Ahmed

1:25:33

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  • 1.1 AGARD-AR-138.pdf
  • 1.2 Cp Plot.xlsx
  • 1.3 NASA_CFL3D_6.2018-1102.pdf
  • 1.4 Onera M6 Wing CFD_WB.pptx
  • 1.5 ONERA M6_ workbenchfiles.zip
  • 1.6 ONERAM6_Withdomain_geometry.zip
  • 1. Introduction.mp4
    20:34
  • 2. General Overview.mp4
    05:12
  • 1. Importing geometry into spacelcaim.mp4
    03:16
  • 2. Mesh generation.mp4
    17:38
  • 1. Problem setup in Fluent.mp4
    16:18
  • 2. Results and validation.mp4
    22:35
  • Description


    Learn CFD analysis and validation for complex case in one hour

    What You'll Learn?


    • Learning high quality CFD analysis for aerodynamic flows
    • ANSYS workbench
    • Mesh generation for complex geometries such as ONERA M6 wing in ANSYS Meshing
    • Setting up Aerodynamics problem in Fluent with optimum settings
    • Getting Cd, Cl, Cm from CFD and comparison with high quality CFD data from NASA
    • Validation of results though experimental data

    Who is this for?


  • Mechanical and aerospace students and professionals
  • More details


    Description

    This course aims the aspirants who want to advance their knowledge in aerodynamic CFD. Students will learn to apply ANSYS CFD package suit to solve a complex 3D test case known as "ONERA M6 wing"

    This course is designed to take advantage of ANSYS workbench's integrated and simple environment to concentrate on learning rather than going into complex software learning. The student will learn to import geometry and inspect it. After that students will set the proper environment in ANSYS workbench meshing to define sizes for different geometry features. We will also use the size function to capture tight curvature on the tip region of the wing. We will also apply a body of influence to refine the mesh in the wake region and region around the wing to capture important flow features.

    We will set up boundary conditions, material properties, turbulence models, flow schemes, solvers, report definitions, and convergence criteria. We will use FMG (FAS multigrid) to accelerate convergence and we will use solution steering to automatically increase or decrease courant to accelerate solution convergence.

    We will use NASA data for drag, lift, and moment coefficient to compare our results for similar parameters. We will also use experimental Cp (coefficient of pressure) values at different span locations of the wing to compare and validate our CFD. And we also discuss results in terms of pressure contours etc.


    Who this course is for:

    • Mechanical and aerospace students and professionals

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    My name is Sijal Ahmed. And I am in CFD field since 2005 when I finished my studies in same field from one of the top university in Pakistan. I have passion for CFD and I want to spread this knowledge to students who are just starting their career. I have developed many courses on computational fluid dynamics and taught many students online and class room based training. You can contact me for online classes and consultancy.
    Students take courses primarily to improve job-related skills.Some courses generate credit toward technical certification. Udemy has made a special effort to attract corporate trainers seeking to create coursework for employees of their company.
    • language english
    • Training sessions 6
    • duration 1:25:33
    • Release Date 2022/12/31