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Topic: Computational Fluid Dynamics (CFD) Solution Approached

  1. #1
    VGL
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    Computational Fluid Dynamics (CFD) Solution Approached

    Computational Fluid Dynamics (CFD) Practical Training
    For more info contact: Tel: 08133476558, 07085740887
    Address: Opebi, Ikeja, Lagos State, Nigeria
    Email: vogwconcept50 (at) gmail.com


    Computational Fluid Dynamics (CFD) Solution Approached


    Module I: Fundamental of Fluid Dynamic e.t.c

    • Introduction to CFD
    • Concept of continuum, streamline, and pathlines
    • Pressure distribution in fluid
    • Reynolds transport theorem
    • Viscous and inviscid flows
    • Laminar and Turbulent flows
    • Euler and Navier Stoke equations and others
    • External and internal flows
    • Compressible and incompressible flow
    • Properties of Supersonic and Subsonic flows
    • Governing equations of fluid dynamics and their physical meaning
    • Introduction to flow analysis
    • Mixing Pipe flow analysis
    • Mesh comparison
    • Aerodynamic Flow analysis for square/circle/Ellipse 2D profile
    • Compressible flow: intake flow
    • Compressible flow: Transonic flow
    • Concept of region, Boundaries splitting boundaries
    • Numerical methods in CFD
    • Introduction to Numerical methods
    • Steady and transient solution
    • Creation of water tight geometry

    Module II: CFD Analysis

    Application Techniques (CFD)

    Problem Specification

    1. Pre-Analysis & Start-Up
    2. Geometry
    3. Mesh
    4. Setup (Physics)
    5. Solution
    6. Results
    7. Verification & Validation


    Geometry

    Choice of geometry (2D or 3D) consideration

    -Turbulent Flow in an Asymmetric diffuser,
    -Airfoil
    -Laminar Pipe Flows
    - Turbulent Flow over Ahmend body
    -Radiant warmer
    - Pipe junction with dimension
    -Horizontal Three-Phase
    -Aircraft design e.t.c

    Meshing/Grid

    Types of Grid/Mesh

    -Structural, unstructured, Hybrid e.t.c

    Mesh Generation Techniques

    1. Repairing a Boundary?
    2. Tetrahedral Mesh Generation
    3. Zonal Hybrid Mesh
    4. Viscous Hybrid Mesh Generation
    4. Hexcore Mesh Generation
    5. Generating the Hexcore Mesh to Domain
    6. Using the Boundary Wrapper
    7.CutCell Mesh Generation
    8. Object Based Mesh
    9. Cavity Remeshing

    • Specifying meshing type (free or mapped)
    • Meshing solid model entities
    • Clearing meshes
    • Refining meshes

    Module III – Advance CFD

    1. Pre-Analysis & Start-Up
    2. Geometry
    3. Mesh
    4. Setup (Physics)
    5. Solution
    6. Results
    7. Verification & Validation

    Module IV – Domain – Based projects

    Domain A. Simulation

    Computations of 2D aerofoil
    Flow simulation on aerofoil at various angles of attack
    Supersonic and subsonic flow simulations
    Lift, drag prediction on an aero plane, rockets and missiles
    Project based on air-craft systems (wing, fuselage etc.)

    Domain B. Automobile Simulation

    Introduction to various terminologies in automobile simulations
    CFD analysis on Ahmed body
    Transient and steady state analysis
    Project based on automotive systems (Under hood thermal analysis, External flow, Passenger comfort analysis)

    Domain C. Turbo machinery

    Introduction to turbo machinery terminology
    Quasi-Steady Rotor-Stator Interaction
    CFD study of rotor-stator interactions
    CFD simulation of turbo machinery components

    Domain D. Chemical Fluid Mixing Simulation

    Stirred tank modeling using the actual impeller geometry
    Rotating frame model
    The MRF Model
    Sliding mesh model
    Industrial Example
    Domain Horizontal Three-Phase
    E.t.c

    Domain E - Project base work

    NOTE:
    Only ONE of the above mentioned domains will be considered, participants must clearly

    Mention their choice of Domains in the modules.

    For more info contact: Tel: 08133476558, 07085740887
    Address: Opebi, Ikeja, Lagos State, Nigeria
    Email: vogwconcept50 (at) gmail.com



  2. #2
    VGL
    VGL is offline
    Senior Member VGL's Avatar
    Join Date
    Dec 2010
    Posts
    224

    Re: Computational Fluid Dynamics (CFD) Solution Approached

    Computational Fluid Dynamics (CFD) Practical Training
    For more info contact: Tel: 08133476558, 07085740887
    Address: Opebi, Ikeja, Lagos State, Nigeria
    Email: vogwconcept50 (at) gmail.com


    Computational Fluid Dynamics (CFD) Solution Approached


    Module I: Fundamental of Fluid Dynamic e.t.c

    • Introduction to CFD
    • Concept of continuum, streamline, and pathlines
    • Pressure distribution in fluid
    • Reynolds transport theorem
    • Viscous and inviscid flows
    • Laminar and Turbulent flows
    • Euler and Navier Stoke equations and others
    • External and internal flows
    • Compressible and incompressible flow
    • Properties of Supersonic and Subsonic flows
    • Governing equations of fluid dynamics and their physical meaning
    • Introduction to flow analysis
    • Mixing Pipe flow analysis
    • Mesh comparison
    • Aerodynamic Flow analysis for square/circle/Ellipse 2D profile
    • Compressible flow: intake flow
    • Compressible flow: Transonic flow
    • Concept of region, Boundaries splitting boundaries
    • Numerical methods in CFD
    • Introduction to Numerical methods
    • Steady and transient solution
    • Creation of water tight geometry

    Module II: CFD Analysis

    Application Techniques (CFD)

    Problem Specification

    1. Pre-Analysis & Start-Up
    2. Geometry
    3. Mesh
    4. Setup (Physics)
    5. Solution
    6. Results
    7. Verification & Validation


    Geometry

    Choice of geometry (2D or 3D) consideration

    -Turbulent Flow in an Asymmetric diffuser,
    -Airfoil
    -Laminar Pipe Flows
    - Turbulent Flow over Ahmend body
    -Radiant warmer
    - Pipe junction with dimension
    -Horizontal Three-Phase
    -Aircraft design e.t.c

    Meshing/Grid

    Types of Grid/Mesh

    -Structural, unstructured, Hybrid e.t.c

    Mesh Generation Techniques

    1. Repairing a Boundary?
    2. Tetrahedral Mesh Generation
    3. Zonal Hybrid Mesh
    4. Viscous Hybrid Mesh Generation
    4. Hexcore Mesh Generation
    5. Generating the Hexcore Mesh to Domain
    6. Using the Boundary Wrapper
    7.CutCell Mesh Generation
    8. Object Based Mesh
    9. Cavity Remeshing

    • Specifying meshing type (free or mapped)
    • Meshing solid model entities
    • Clearing meshes
    • Refining meshes

    Module III – Advance CFD

    1. Pre-Analysis & Start-Up
    2. Geometry
    3. Mesh
    4. Setup (Physics)
    5. Solution
    6. Results
    7. Verification & Validation

    Module IV – Domain – Based projects

    Domain A. Simulation

    Computations of 2D aerofoil
    Flow simulation on aerofoil at various angles of attack
    Supersonic and subsonic flow simulations
    Lift, drag prediction on an aero plane, rockets and missiles
    Project based on air-craft systems (wing, fuselage etc.)

    Domain B. Automobile Simulation

    Introduction to various terminologies in automobile simulations
    CFD analysis on Ahmed body
    Transient and steady state analysis
    Project based on automotive systems (Under hood thermal analysis, External flow, Passenger comfort analysis)

    Domain C. Turbo machinery

    Introduction to turbo machinery terminology
    Quasi-Steady Rotor-Stator Interaction
    CFD study of rotor-stator interactions
    CFD simulation of turbo machinery components

    Domain D. Chemical Fluid Mixing Simulation

    Stirred tank modeling using the actual impeller geometry
    Rotating frame model
    The MRF Model
    Sliding mesh model
    Industrial Example
    Domain Horizontal Three-Phase
    E.t.c

    Domain E - Project base work

    NOTE:
    Only ONE of the above mentioned domains will be considered, participants must clearly

    Mention their choice of Domains in the modules.

    For more info contact: Tel: 08133476558, 07085740887
    Address: Opebi, Ikeja, Lagos State, Nigeria
    Email: vogwconcept50 (at) gmail.com



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