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ANSYS Fluent 15.0

Course Summary

"Learn how to use Ansys software to simulate most of all engineering problems on this planet as expert as you can."


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    Course Syllabus

    • Fluent Overview
      • My First Lecture
    • Introduction to CFD
      • Introduction and what is CFD
      • Preparation and Planning
      • Geometry and Mesh
      • Solver Setup and Solution
      • Results and Evaluation
    • Cell Zones and Boundary Conditions
      • Introduction
      • Material Properties, inc Fixed or Variable Density
      • Operating Pressure
      • Cell Zones: Introduction
      • Cell Zones: Fluid, Porous and Solid
      • Boundary Conditions: Introduction
      • Inlet BCs: Velocity, Pressure and Mass-Flow
      • Outlet BCs: Pressure and Outflow
      • Wall, Symmetry and Axis Boundaries
      • Copying BCs
      • Good Practice when Defining Boundaries
    • Postprocessing
      • Introduction and Overview
      • Postprocessing Within Fluent
      • CFD-Post: Introduction and Launching
      • 3D Standalone Viewer
      • General Workflow
      • Variables, Tables and Charts
      • Reports and Case Comparison
    • Solver Settings
      • Overview of Solvers (Pressure and Density Based)
      • Pressure-Based Solver
      • Pseudo-Transient
      • Density-Based Solver
      • Discretization Methods (1st / 2nd order)
      • Initialization
      • Case Check
      • Convergence Checking
      • Convergence Troubleshooting and Accuracy
      • Mesh Adaption
    • Appendix
      • Appendix 1
      • Appendix 2
      • Appendix 3
      • Appendix 4
      • Appendix 5
      • Appendix 6
      • Appendix 7
      • Appendix 8
      • Appendix 9
      • Appendix 10
    • Turbulence Modeling
      • Background to Turbulent Flow
      • Mean and Instantaneous Velocities
      • Overview of Approaches (DNS / LES / RANS)
      • RANS (Reynolds-Averaged Naview Stokes) Models
      • Models Available in Fluent
      • 2-equation Models (k-e and k-omega)
      • SST and RSM Models
      • Turbulence Near a Wall
      • Predicting Near-Wall Cell Size
      • Limitations of Wall Functions
      • Enhanced Wall Treatment
      • Selecting Wall Models
      • Inlet Boundary Conditions
      • Summary of Models in Fluent
    • Heat Transfer
      • Introduction to Heat Transfer
      • Energy Equation
      • Convection, Conduction and Dissipation
      • Thermal Wall Boundary Conditions
      • Modeling a Thin Wall
      • Conjugate Heat Transfer (Fluid + Solid)
      • Convection Types
      • Natural Convection
      • Radiation
      • Phase Change
      • Postprocessing and Convergence
      • 1-way Thermal FSI, and Exporting Data
    • Non-Conformal Interfaces and Moving Zones
      • Introduction and Interfaces
      • Periodic Boundaries
      • Moving Reference Frame (MRF) vs Moving Mesh
      • Setting a MRF Zone
      • Sliding Mesh
      • Dynamic Meshes
    • Best Practices for CFD
      • Overview and Quality Issues
      • Roundoff and Iteration Errors
      • Discretization Errors
      • Model and Systematic Errors
      • Meshing Best Practice
      • Mesh Quality Issues
      • Hex vs Tet Meshing
    • Transient Simulations
      • Introduction and Motivation
      • Approach to Modeling
      • Picking an Appropriate Timestep
      • Setting up the Solver
      • Non-Iterative Time Advancement (NITA)
      • Transient Options
      • Initialization and Tips
      • Postprocessing (Fluent)
      • Postprocessing (CFD-Post)
    • User Defined Functions (UDF)
      • Introduction to UDFs


Course Fee:
USD 715

Course Type:

Self-Study

Course Status:

Active

Workload:

1 - 4 hours / week

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REDHERRING
Top 100 Asia
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