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FEA & CFD with ANSYS Mechanical & ANSYS Fluent- For Beginner

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Umair Ahmad Khan

5:12:51

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  • 1. What you will learn in this course.mp4
    02:19
  • 2. Prerequisites.mp4
    01:39
  • 3.1 1.3 Engineering Design Process.pptx
  • 3. Engineering Design Process.mp4
    07:55
  • 4. Why ANSYS.mp4
    02:11
  • 1. Introduction to Finite Element Method.mp4
    04:11
  • 2.1 2.1 Finite Element Analysis (FEA).pptx
  • 2. Theory behind Finite Element Analysis.mp4
    10:43
  • 3. Types of Elements.mp4
    04:16
  • 4. FEA Problem Solving Procedure.mp4
    03:30
  • 1. Overview of UI.mp4
    06:47
  • 2. Saving ANSYS Projects.mp4
    02:45
  • 3. Engineering Data Manager.mp4
    06:21
  • 4. How to create custom materials.mp4
    03:36
  • 1. Overview of Design Modeller.mp4
    12:46
  • 2. Overview of ANSYS Spaceclaim.mp4
    08:07
  • 3. Importing designs from other CAD Packages.mp4
    02:49
  • 1. Meshing in ANSYS.mp4
    03:31
  • 2. Global Meshing.mp4
    05:48
  • 3. Local Meshing.mp4
    06:31
  • 4. Mesh Quality Parameters.mp4
    04:37
  • 1.1 6.1 cantilever beam.zip
  • 1. Static Structural Analysis of a Cantilever Beam.mp4
    25:30
  • 2.1 6.2 simply supported i-beam.zip
  • 2. Static Structural Analysis of a Simply Supported I-Beam.mp4
    06:14
  • 1.1 7.1 metal plate.zip
  • 1. Steady State Thermal Analysis of a Metal Plate.mp4
    09:38
  • 2.1 7.2 composite tube.zip
  • 2. Steady State Thermal Analysis of a Cylindrical Composite Wall.mp4
    11:22
  • 3.1 7.3 heat sink.zip
  • 3. Steady State Thermal Analysis of Heat Sink under Natural Convection.mp4
    09:09
  • 4. Thermo-Structural Analysis of a Metal Rod.mp4
    08:40
  • 1. Introduction to Modal Analysis.mp4
    02:54
  • 2.1 8.2 tuning fork.zip
  • 2. Modal Analysis of Tuning Fork (Free-Free).mp4
    07:07
  • 3. Modal Analysis of Tuning Fork (Pre-Stress).mp4
    06:15
  • 1. Introduction to Buckling Analysis.mp4
    04:16
  • 2. Buckling Analysis of a Concrete Column.mp4
    08:01
  • 1. Introduction to Electric Analysis.mp4
    01:24
  • 2. Electric Analysis of a Copper Wire.mp4
    05:42
  • 1. Introduction to Topology Optimization.mp4
    03:02
  • 2. Topology Optimization of Simply Supported Beam.mp4
    14:18
  • 1. Introduction to Computational Fluid Dynamics.mp4
    02:10
  • 2. Laminar Flow in a Pipe A - Geometry Creation & Meshing.mp4
    08:28
  • 3. Laminar Flow in a Pipe B - Conducting CFD Analysis in Fluent.mp4
    22:21
  • 4. Laminar Flow in a Pipe C - CFD Post.mp4
    11:34
  • 5.1 12.2 heatsink under forced convection.zip
  • 5. Conjugate Heat Transfer Analysis of Heat Sink under Forced Convection - A.mp4
    14:26
  • 6. Conjugate Heat Transfer Analysis of Heat Sink under Forced Convection - B.mp4
    10:41
  • 7. Conjugate Heat Transfer Analysis of Heat Sink under Forced Convection - C.mp4
    05:09
  • 1. Analysis of Stresses in a Metal Plate due to Air Flow - A.mp4
    05:45
  • 2. Analysis of Stresses in a Metal Plate due to Air Flow - A.mp4
    06:33
  • 1. CONGRATULATIONS & What to do Next.mp4
    01:50
  • Description


    Learn FEA and CFD using ANSYS Mechanical and ANSYS Fluent with hands-on training exercises.

    What You'll Learn?


    • The theory of Finite Element Analysis (FEA) and how to use it to solve engineering problems using ANSYS.
    • ANSYS Workbench Interface, Engineering Data & Creating Custom Materials.
    • Geometry Creation for analysis using ANSYS Design Modeller and ANSYS Spaceclaim.
    • How to conduct a Static Structural and Static Thermal Analysis along with combined Thermo-structural Analysis.
    • How to conduct a Modal and Buckling Analysis .
    • How to conduct a Topology Optimization Study.
    • How to conduct a Computational Fluid Dynamics Study Using ANSYS Fluent.
    • How to create geometries for CFD Analysis
    • How to conduct a conjugate Heat Transfer analysis using ANSYS Fluent.
    • How to solve Fluid-Solid Interaction (FSI) Problems using ANSYS.

    Who is this for?


  • Anyone willing to learn how to conduct engineering simulations using ANSYS.
  • Engineering Students specially Mechanical Engineering Students wanting to equip themselves with FEA and CFD Skills.
  • Mechanical Designers who want to improve their skillset.
  • More details


    Description

    ANSYS is the industry leading general purpose Finite Element Analysis software package used in both industry and academic institutions all over the world. It is used to simulate real world situations in order to analyse the performance of products in order to achieve the best possible design.

    ANSYS uses Finite Element Method to analyse the responses of your design to various kinds of loadings ranging from forces, electric currents, heat to fluid flow with the goal of achieving the best design possible for your product. Moreover, you can use ANSYS for optimizing your design in accordance with your design criteria.

    This course will start with the basic overview of Finite Element Method, which is the mathematical procedure used by ANSYS to conduct all kinds of analyses. And then you will learn how to implement that method inside the ANSYS Environment. You will learn all the steps of conducting an Engineering Analysis, Geometry Creation, Meshing, Setting Boundary Conditions and more. You will also be acquainted with two CAD Modelling Packages for Geometry Creation namely SpaceClaim and DesignModeller, which are already included in the ANSYS Software. You will also learn how you can import files other CAD Packages such as SolidWorks.

    Moreover, this course will also introduce you to Computational Fluid Dynamics (CFD) and how you can conduct a CFD Analysis using ANSYS Fluent.

    You will also learn how to use the results from various kinds of analyses in order to conduct a Topology Optimization study for your design in order to obtain a light-weight design for your product.

    You will learn how to conduct following analyses in full in-depth follow-along video lectures Disciplines:

    • STATIC STRUCTURAL ANALYSIS

    • THERMAL ANALYSIS

    • MODAL ANALYSIS

    • BUCKLING ANALYSIS

    • ELECTRIC ANALYSIS

    • TOPOLOGY OPTIMIZATION

    • LAMINAR FLUID FLOW ANALYSIS

    • TURBULENT FLUID FLOW ANALYSIS

    • FLUID-SOLID INTERACTION PROBLEMS

    New sections and analysis may be added too to this course, so stay tuned.

    So, jump in and let's start simulating together

    Who this course is for:

    • Anyone willing to learn how to conduct engineering simulations using ANSYS.
    • Engineering Students specially Mechanical Engineering Students wanting to equip themselves with FEA and CFD Skills.
    • Mechanical Designers who want to improve their skillset.

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    Umair Ahmad Khan
    Umair Ahmad Khan
    Instructor's Courses
    I am a Mechanical Design Engineer currently pursuing Masters Degree in Design Engineering. The focus of my research is Design Optimization and Finite Element Analysis. I have been working as a Freelance CAD/CAE Engineer for 6+ years and have worked on several projects involving CAE.I have always wanted to imagine and create new things and I think that is the reason why I loved CAD so much when I was first introduced to it. I have been using CAD Packages such as SolidWorks, ANSYS, PTC Creo and more for a long time. Some of them I was taught academically but most of them I learned on my own. Because I believe if you really want to learn something, resources make themselves available to you. You just need to have a drive and will. Apart from that I love video games. And through CAD and video games, I have also been creating CGI and digital for sometimes now. If you have any question feel free to ask me. Whether here on Udemy or my EMAIL or twitter, wherever you like. Thanks
    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 44
    • duration 5:12:51
    • Release Date 2023/03/09