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Advance Numerical Simulations using ANSYS Fluent

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Mohammed Khan

9:09:27

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  • 1 - Introduction.mp4
    10:41
  • 2 - Join the Community.html
  • 3 - 7.Different-material-flow-in-Pipe.rar
  • 3 - Introduction Modeling the Geomerty in SpaceClaim.mp4
    12:16
  • 4 - Modeling the Geometry in Design Modeler.mp4
    05:59
  • 5 - Grid Generation.mp4
    11:43
  • 5 - y calculation.zip
  • 6 - Setting up the Physics Changing the Fluid Material.mp4
    08:59
  • 7 - Results and Discussion.mp4
    07:09
  • 8 - 8.DPM-In-Pipe.rar
  • 8 - Introduction to the Case.mp4
    07:11
  • 9 - Setting the Physics.mp4
    07:23
  • 10 - Analysing the Results Fluid Flow Simulation.mp4
    06:14
  • 11 - Introduction to Discrete Phase Modelling.mp4
    09:28
  • 12 - Setting up DPM and Assigining Injection Material.mp4
    06:53
  • 13 - Particle Tracks.mp4
    06:48
  • 14 - Types of Coupling in DPM.mp4
    09:33
  • 15 - Rossin Rammler Distribution.mp4
    07:18
  • 16 - Viewing the Particle Size with Histograms.mp4
    06:26
  • 17 - Boundary Condition in DPM Trap.mp4
    02:16
  • 18 - Stochastic Tracking Random Walk Model.mp4
    05:47
  • 19 - Evaluate Erosion with DPM and Particle History.mp4
    06:36
  • 20 - Exporting Particles Tracks to CFD post.mp4
    08:39
  • 21 - Analysis.rar
  • 21 - Design.rar
  • 21 - Introduction to the Case.mp4
    06:26
  • 22 - Creating the Domain Indoor Environment.mp4
    12:04
  • 23 - Generating Threedimensional Grid.mp4
    15:28
  • 24 - Naming the Boundaries.mp4
    01:33
  • 25 - What are Buoyancy DrivenDensity Driven Flows.mp4
    15:26
  • 26 - Setting the Physics.mp4
    02:22
  • 27 - Creating Report Definitions.mp4
    07:46
  • 28 - Dealing with Convergence.mp4
    01:17
  • 29 - Extending the Simulation.mp4
    01:33
  • 30 - Visualising the Results and Extractin the Velocity Plots.mp4
    17:09
  • 31 - Comparing Experimental Vs Numerical Velocity.mp4
    14:29
  • 32 - 12-Car.rar
  • 32 - Introduction to the Case Release of Combustion Gases from Car Engine.mp4
    06:40
  • 33 - Importing the Geometry and Splitting the Face.mp4
    10:14
  • 34 - Boolean Operation and Naming the Boundaries.mp4
    08:38
  • 35 - Discretising the Domain.mp4
    04:49
  • 36 - Physics Setup Gravity and Models.mp4
    07:17
  • 37 - Setting the Mixture Template.mp4
    08:52
  • 38 - Setting the Boundary Conditions.mp4
    15:52
  • 39 - Setting the Operating Conditions.mp4
    04:36
  • 40 - Solution Methods.mp4
    06:59
  • 41 - Concluding the Solution with Convergence.mp4
    01:53
  • 42 - Post Processing the Results in CFD Post.mp4
    18:17
  • 43 - 6.Methan-Air-COmbustion.rar
  • 43 - Introduction to the Case.mp4
    07:25
  • 44 - Modeling the Cylinderical Combustor.mp4
    08:38
  • 45 - Grid Generation.mp4
    09:00
  • 46 - Assigning the Boundary Conditions.mp4
    15:16
  • 47 - Setting the Solution Methods.mp4
    02:24
  • 48 - Analysing the Convergence and Verifiying the Case.mp4
    02:28
  • 49 - Post Processing the Results.mp4
    08:57
  • 50 - Setting up the model and Finding the Pollutant Mass fraction.mp4
    21:29
  • 51 - FSI.rar
  • 51 - Introduction to the Case Underwater Structure Beam.mp4
    01:56
  • 52 - Modeling the Domain.mp4
    06:54
  • 53 - Setting the Geometry.mp4
    07:25
  • 54 - Adding Body of Influence.mp4
    06:32
  • 55 - Grid Generation with Body of Influence.mp4
    05:22
  • 56 - Setting up the Physics.mp4
    09:22
  • 57 - Convergence and CFD Post.mp4
    14:51
  • 58 - Importing the Geometry in Static Structural Module.mp4
    09:13
  • 59 - Adding Fluent Pressure Load and Evaluating the Deformation and Stress.mp4
    17:32
  • 60 - Introduction.mp4
    11:16
  • 60 - prt0001.zip
  • 61 - Setting the Geometry.mp4
    06:14
  • 62 - Grid Generation.mp4
    09:12
  • 63 - Setting up the Boundary Conditions.mp4
    10:10
  • 64 - Setting the Solution Methods.mp4
    04:10
  • 65 - Tackling a Transient case.mp4
    03:36
  • 66 - Analysing the Convergence.mp4
    00:57
  • 67 - Visualization of the Flow Field.mp4
    12:09
  • 68 - Bonus Lecture.html
  • Description


    An Advanced Course on Computational Fluid Dynamics

    What You'll Learn?


    • • Efficiently perform Numerical Simulations using ANSYS Fluent (Fluid Flow)
    • • Setup the mathematical model in an appropriate manner
    • • Learn to setup advanced models in Fluent
    • • Studying the Fluid flow in three-dimensional models
    • • Solve cases that involve Fluid Structure Interaction
    • • Efficiently post process the results to understand the physical meaning

    Who is this for?


  • Experts desiring to enlighten their knowledge on Computational Fluid Dynamics.
  • Research investigators and students willing to use CFD as their Research tool
  • Industrial professionals willing to utilize CFD for understanding the flow field in industrial applications
  • Students wanting to learn ANSYS Fluent from the Basics to Advanced level.
  • More details


    Description

    Do you wish to enhance your knowledge and expertise in Computational Fluid Dynamics (CFD)?

    Are you struggling to understand the methodology required to be followed while solving a numerical simulation using a CFD solver, such as ANSYS Fluent?

    Do you wish to learn and understand the procedure of tackling any CFD case with ease or without pushing yourself through infinite textbooks and online guides?

    Do you wish to understand CFD in a simple yet effective manner with proper applications?

    Boom.! You have landed at the right place.!

    By going through this course, you will learn to perform methodologies and procedures required to solve a CFD case using ANSYS Fluent code.

    The course contains projects, going through them one-by-one will acquaint you with various applications and tools available in the solver. A complete package!

    You do not need to have any pre-knowledge of performing a CFD simulation.

    Additionally, from this course, you'll learn and get acquainted with 3d CAD software – Creo Parametric.

    Sign up today, and here’s what you’ll get:

    · Hours of HD video content

    · All the information you need to start building any case

    · Assistance for your numerical projects

    · The world's best course on ANSYS Fluent that you can buy.

    By the end of this course you will be familiar with these concepts:

    · Changing the fluid flow material

    · Discrete Phase Modelling (DPM)

    · Multi Inlet simulation

    · Setting up DPM

    · Assigning Injections through surfaces

    · Particle Tracks

    · Coupling in DPM

    · Rossin-Rammler Distribution

    · Analyze the particle sizes in the domain

    · Boundary Conditions in DPM

    · Evaluate Erosion and Particle History

    · Exploring particle tracks in CFD- post

    · Indoor Ventilation

    · Handling three-dimensional domains

    · Model Density-driven flows in ANSYS Fluent

    · Visualizing three-dimensional results in CFD-post

    · Modeling the Multi-Species model.

    · Modeling the dispersion of Hot combusted gases

    · Modeling fuel-air combustion system

    · Tackle NOX formulation model

    · Fluid-Structure Interaction Analysis

    · Underwater beam structure

    · Static Structural Analysis.

    · Mesh Sizing operations

    · Various options in ANSYS Design Modeler

    · Importance of Computational Fluid Dynamics

    · Governing equations involved in Fluid Flow Simulations

    · Overview of the Flow Solvers (Pressure-Based and Density-Based)

    · Algorithms and Formulations

    · Turbulent Flows

    · Turbulence Models

    · RANS Modelling

    · Importance of Y+

    · Boundary Layers and Division of Boundary layers

    · Modeling Strategies (Wall Functions and Resolving the Boundary Layer)

    Don't waste another minute of your precious life on poor-quality videos on free platforms with trainers with no real-world/in-person teaching experience. Your learning and your time are worth more than that.

    I am looking forward to teaching you all about CFD using ANSYS Fluent

    Who this course is for:

    • Experts desiring to enlighten their knowledge on Computational Fluid Dynamics.
    • Research investigators and students willing to use CFD as their Research tool
    • Industrial professionals willing to utilize CFD for understanding the flow field in industrial applications
    • Students wanting to learn ANSYS Fluent from the Basics to Advanced level.

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    Mohammed Khan
    Mohammed Khan
    Instructor's Courses
    Hi. I am Mohammed, a passionate computer and coding geek, a deft design engineer, and a professional CFD (Computational Fluid Dynamics) freelancer. I have created numerous Applications & Websites and also worked on various aspects of academic research in the field of Mechanical/Aerospace Engineering.With extensive knowledge that I have imbibed across multiple domains of engineering, I have decided to share all of my knowledge by creating a series of courses. I hope that these courses will help to enhance the knowledge of all the struggling engineers, researchers and students across the globe.
    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 66
    • duration 9:09:27
    • English subtitles has
    • Release Date 2023/02/06