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ANSYS ICEMCFD Hexa Basic course (Part 2)

سرفصل های دوره

Become pro in Hexa mesh generation for CFD analysis


1. Introduction
  • 1.1 ICEMCFDCourse_Lec1 .pptx
  • 1. Introduction

  • 2. Workshop 11 Hexa meshing in 2D concentric cylinders
  • 1.1 Assignment.zip
  • 1.2 ICEMCFDCourse_WS11.pdf
  • 1.3 Input output files.zip
  • 1. Problem description and Introduction
  • 2. Blocking, pre-mesh and mesh export for the concentric cylinders

  • 3. Workshop 12 Hexa meshing of two concentric cylinders
  • 1.1 ICEMCFDCourse_WS12.pdf
  • 1.2 Input output files.zip
  • 1. Introduction
  • 2. Hexa meshing for 2D concentric piping - 1
  • 3. Hexa meshing for 2D concentric piping - 2
  • 4. Hexa meshing for 2D concentric piping - 3 - Mesh export and other settings
  • 5. Getting ready geometry for 3D concentric pipes
  • 6. Getting points and curves at proper location for 3D case
  • 7. 3D dimensional concentric pipes with large and small dia
  • 8. Futher working on geometry features for blocking
  • 9. Blocking for 3D concentric pipes
  • 10. Premesh for 3D case
  • 11. Mesh export for 3D case
  • 12. Assignment
  • 13. Creating mesh for two small pipes connected by one large dia cylinder.html

  • 4. Workshop 13 Hexa meshing of two concentric cylinders with internal wall
  • 1.1 ICEMCFDCourse_WS13.pdf
  • 1.2 Input output files.zip
  • 1. Problem description
  • 2. Using existing blocking from WS 12 for WS 13
  • 3. Face to surface association for internal wall and mesh export

  • 5. Workshop 14 Hexa meshing of 2D Wedge
  • 1. Problem description
  • 2. Blocking, premesh and mesh export
  • 3. Mesh refinement

  • 6. Workshop 15 Hexa meshing of backward facing step
  • 1.1 ICEMCFDCourse_WS15.pdf
  • 1.2 Input output files.zip
  • 1. Problem description and introduction
  • 2. Blocking, splits and association for BFS geometry
  • 3. Defining splits and zones based on flow physics
  • 4. Meshing according to flow physics
  • 5. Mesh export
  • 6. Assignment for workshop 15

  • 7. Workshop 16 Hexa meshing of S809 airfoil with different options
  • 1.1 Assignment.zip
  • 1.2 ICEMCFDCourse_WS16.pdf
  • 1.3 Input output files.zip
  • 1. Problem description and introduction
  • 2. Blocking strategy for sharp trailing edge and rectangular domain
  • 3. Blocking strategy for square trailing edge and rectangular domain
  • 4. Blocking method for sharp TE and semicircular domain
  • 5. Blocking method for square TE and semicircular domain
  • 6. Mesh export and further discussion on airfoil meshing
  • 7. Airfoil with angle of attack and corresponding blocking techniques
  • 8. Assignment for workshop 16
  • 9. Using blocking and domain shape from S809 airfoil for NACA 4412 airfoil

  • 8. Workshop 17 Hexa meshing of parabolic trough for solar energy
  • 1.1 ICEMCFDCourse_WS17.pdf
  • 1.2 Input output files.zip
  • 1. Introduction
  • 2. Problem description and discussion about blocking layout
  • 3. Quarter O-Grid for trough geometry
  • 4. Blocking adjustment and find tuning
  • 5. Creating solid material, editing edges and defining rough meshing parameters
  • 6. Checking mesh quality and tips and tricks to improve mesh quality
  • 7. Creating C-Grid around parabolic trough for capturing boundary layer
  • 8. Fine tuning of final mesh
  • 9. Mesh export

  • 9. Workshop 18 Hexa meshing of converging diverging nozzle
  • 1.1 Fluentsolvedcases.zip
  • 1.2 ICEMCFDCourse_WS18.pdf
  • 1.3 Input output files.zip
  • 1. Problem description and geometry details
  • 2. Creating block, splitting edges and adjustments to blocking
  • 3. Fine tuning of meshing parameters on nozzle and domain
  • 4. Mesh export and removing errors from mesh

  • 10. Workshop 19 Hexa mesh of 2D 90 degrees bend
  • 1.1 ICEMCFDCourse_WS19.pdf
  • 1.2 Input output files.zip
  • 1. Introduction
  • 2. Blocking strategies
  • 3. Creating parts and association
  • 4. Creation of OGrid and defining pre-mesh edge parameters
  • 5. Mesh Export
  • 6. Solution in Fluent

  • 11. Workshop 20 Hexa meshing of 2D pipe junction
  • 1.1 ICEMCFDCourse_WS20.pdf
  • 1.2 Input output files.zip
  • 1. Introduction
  • 2. Blocking method 1
  • 3. Blocking method 2
  • 4. Blocking method 3
  • 5. Blocking association to geometry
  • 6. Creation of O-Grid, Pre-mesh edge parameters and grid quality improvement
  • 7. Mesh export
  • 8. Running solution in Fluent

  • 12. Workshop 21 Hexa meshing of water wind tunnel
  • 1.1 ICEMCFDCourse_WS21.pdf
  • 1.2 Input output files.zip
  • 1. Introduction
  • 2. Discussion on optimal blocking method
  • 3. Fine tuning of blocking and creation of O-Grid for boundary layer mesh
  • 4. Defining edge sizing for pre-mesh
  • 5. Mesh export

  • 13. Worshop 22 Hexa meshing of 2D Lenz vertical axis wind turbine
  • 1.1 35 IJAERS-MAR-2018-22-Study, Design and Test.pdf
  • 1.2 epjconf_efm2017_02150.pdf
  • 1.3 ICEMCFDCourse_WS22.pdf
  • 1.4 Input output files.zip
  • 1.5 Numerical_investigation_of_a_small_water_turbine_u.pdf
  • 1. Introduction
  • 2.1 Input output files.zip
  • 2. Block creation, initial association and defining periodicity
  • 3. Splitting blocks and creation of multiple O-Grid for capturing geometry and flow
  • 4. Association and blocking fine tuning
  • 5. Pre-Mesh edge parameters for Lenz turbine

  • 14. Workshop 23 Hexa meshing of volute
  • 1. Introduction
  • 2. Initial blocking and settings
  • 3. Association and final mesh

  • 15. Mesh editing, refinement, mesh extrude and other operations on mesh
  • 1. Introduction
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