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ANSYS ICEMCFD Hexa Basic course (Part 2)

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Sijal Ahmed

5:46:46

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  • 1.1 ICEMCFDCourse_Lec1 .pptx
  • 1. Introduction.mp4
    01:39
  • 1.1 Assignment.zip
  • 1.2 ICEMCFDCourse_WS11.pdf
  • 1.3 Input output files.zip
  • 1. Problem description and Introduction.mp4
    02:24
  • 2. Blocking, pre-mesh and mesh export for the concentric cylinders.mp4
    09:05
  • 1.1 ICEMCFDCourse_WS12.pdf
  • 1.2 Input output files.zip
  • 1. Introduction.mp4
    01:35
  • 2. Hexa meshing for 2D concentric piping - 1.mp4
    01:35
  • 3. Hexa meshing for 2D concentric piping - 2.mp4
    03:47
  • 4. Hexa meshing for 2D concentric piping - 3 - Mesh export and other settings.mp4
    08:09
  • 5. Getting ready geometry for 3D concentric pipes.mp4
    08:09
  • 6. Getting points and curves at proper location for 3D case.mp4
    05:40
  • 7. 3D dimensional concentric pipes with large and small dia.mp4
    05:50
  • 8. Futher working on geometry features for blocking.mp4
    03:34
  • 9. Blocking for 3D concentric pipes.mp4
    05:26
  • 10. Premesh for 3D case.mp4
    05:52
  • 11. Mesh export for 3D case.mp4
    07:05
  • 12. Assignment.mp4
    01:20
  • 13. Creating mesh for two small pipes connected by one large dia cylinder.html
  • 1.1 ICEMCFDCourse_WS13.pdf
  • 1.2 Input output files.zip
  • 1. Problem description.mp4
    02:04
  • 2. Using existing blocking from WS 12 for WS 13.mp4
    04:58
  • 3. Face to surface association for internal wall and mesh export.mp4
    08:57
  • 1. Problem description.mp4
    01:04
  • 2. Blocking, premesh and mesh export.mp4
    05:43
  • 3. Mesh refinement.mp4
    07:29
  • 1.1 ICEMCFDCourse_WS15.pdf
  • 1.2 Input output files.zip
  • 1. Problem description and introduction.mp4
    02:43
  • 2. Blocking, splits and association for BFS geometry.mp4
    03:41
  • 3. Defining splits and zones based on flow physics.mp4
    03:48
  • 4. Meshing according to flow physics.mp4
    05:55
  • 5. Mesh export.mp4
    02:13
  • 6. Assignment for workshop 15.mp4
    00:33
  • 1.1 Assignment.zip
  • 1.2 ICEMCFDCourse_WS16.pdf
  • 1.3 Input output files.zip
  • 1. Problem description and introduction.mp4
    04:23
  • 2. Blocking strategy for sharp trailing edge and rectangular domain.mp4
    07:48
  • 3. Blocking strategy for square trailing edge and rectangular domain.mp4
    07:16
  • 4. Blocking method for sharp TE and semicircular domain.mp4
    06:26
  • 5. Blocking method for square TE and semicircular domain.mp4
    05:15
  • 6. Mesh export and further discussion on airfoil meshing.mp4
    04:43
  • 7. Airfoil with angle of attack and corresponding blocking techniques.mp4
    08:29
  • 8. Assignment for workshop 16.mp4
    02:10
  • 9. Using blocking and domain shape from S809 airfoil for NACA 4412 airfoil.mp4
    07:07
  • 1.1 ICEMCFDCourse_WS17.pdf
  • 1.2 Input output files.zip
  • 1. Introduction.mp4
    01:32
  • 2. Problem description and discussion about blocking layout.mp4
    03:01
  • 3. Quarter O-Grid for trough geometry.mp4
    02:06
  • 4. Blocking adjustment and find tuning.mp4
    02:06
  • 5. Creating solid material, editing edges and defining rough meshing parameters.mp4
    04:08
  • 6. Checking mesh quality and tips and tricks to improve mesh quality.mp4
    06:14
  • 7. Creating C-Grid around parabolic trough for capturing boundary layer.mp4
    05:10
  • 8. Fine tuning of final mesh.mp4
    08:24
  • 9. Mesh export.mp4
    04:04
  • 1.1 Fluentsolvedcases.zip
  • 1.2 ICEMCFDCourse_WS18.pdf
  • 1.3 Input output files.zip
  • 1. Problem description and geometry details.mp4
    01:17
  • 2. Creating block, splitting edges and adjustments to blocking.mp4
    05:55
  • 3. Fine tuning of meshing parameters on nozzle and domain.mp4
    06:48
  • 4. Mesh export and removing errors from mesh.mp4
    10:05
  • 1.1 ICEMCFDCourse_WS19.pdf
  • 1.2 Input output files.zip
  • 1. Introduction.mp4
    01:04
  • 2. Blocking strategies.mp4
    04:46
  • 3. Creating parts and association.mp4
    04:21
  • 4. Creation of OGrid and defining pre-mesh edge parameters.mp4
    07:09
  • 5. Mesh Export.mp4
    03:52
  • 6. Solution in Fluent.mp4
    03:21
  • 1.1 ICEMCFDCourse_WS20.pdf
  • 1.2 Input output files.zip
  • 1. Introduction.mp4
    01:51
  • 2. Blocking method 1.mp4
    04:59
  • 3. Blocking method 2.mp4
    03:29
  • 4. Blocking method 3.mp4
    03:59
  • 5. Blocking association to geometry.mp4
    04:08
  • 6. Creation of O-Grid, Pre-mesh edge parameters and grid quality improvement.mp4
    04:03
  • 7. Mesh export.mp4
    03:12
  • 8. Running solution in Fluent.mp4
    05:13
  • 1.1 ICEMCFDCourse_WS21.pdf
  • 1.2 Input output files.zip
  • 1. Introduction.mp4
    01:38
  • 2. Discussion on optimal blocking method.mp4
    04:40
  • 3. Fine tuning of blocking and creation of O-Grid for boundary layer mesh.mp4
    05:31
  • 4. Defining edge sizing for pre-mesh.mp4
    08:09
  • 5. Mesh export.mp4
    02:20
  • 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.mp4
    01:57
  • 2.1 Input output files.zip
  • 2. Block creation, initial association and defining periodicity.mp4
    03:43
  • 3. Splitting blocks and creation of multiple O-Grid for capturing geometry and flow.mp4
    03:58
  • 4. Association and blocking fine tuning.mp4
    02:22
  • 5. Pre-Mesh edge parameters for Lenz turbine.mp4
    06:45
  • 1. Introduction.mp4
    01:10
  • 2. Initial blocking and settings.mp4
    06:29
  • 3. Association and final mesh.mp4
    07:27
  • 1. Introduction.mp4
    00:25
  • Description


    Become pro in Hexa mesh generation for CFD analysis

    What You'll Learn?


    • How to create best quality hexa meshing for various types of cases in CFD

    Who is this for?


  • From different engineering backgrounds who are using CFD as simulation tool
  • MS and PhD student carrying out research in CFD field
  • Professional engineers / scientists who want to enhance their CFD skills and specially hexa meshing skills
  • More details


    Description

    Meshing can be considered the heart of any CFD simulation. With high quality mesh, you will get accurate results and fast convergence. It is estimated that around 70-80% time in CFD is spent on mesh generation. And in this course, I will teach you meshing in a way so that you can minimize time spent on meshing and give more time to simulation, results interpretation and design optimization. So enroll today and make your CFD analysis of high quality with  professional touch. 


    This is the part 2 of hexa meshing course. In this part you will learn to make hexa meshing for more complex cases. You will also learn new techniques of ICEMCFD for creating high quality hexa meshing.  There are total 17 workshops in this part. I will be updating this course with new workshops to expand your knowledge in this very exciting subject.


    Hope to see you soon on this course.

    Who this course is for:

    • From different engineering backgrounds who are using CFD as simulation tool
    • MS and PhD student carrying out research in CFD field
    • Professional engineers / scientists who want to enhance their CFD skills and specially hexa meshing skills

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    My name is Sijal Ahmed. And I am in CFD field since 2005 when I finished my studies in same field from one of the top university in Pakistan. I have passion for CFD and I want to spread this knowledge to students who are just starting their career. I have developed many courses on computational fluid dynamics and taught many students online and class room based training. You can contact me for online classes and consultancy.
    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 77
    • duration 5:46:46
    • Release Date 2023/02/28