Udemy - Computational Fluid Dynamics (CFD) for Professionals

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[ TutGator.com ] Udemy - Computational Fluid Dynamics (CFD) for Professionals
  • Get Bonus Downloads Here.url (0.2 KB)
  • ~Get Your Files Here ! 1. Welcome and Introduction
    • 1. Welcome to the Course!.mp4 (64.9 MB)
    • 1. Welcome to the Course!.srt (4.4 KB)
    • 1.1 lectureNotes.pdf (4.9 MB)
    • 2. Introduction and Housekeeping.mp4 (33.5 MB)
    • 2. Introduction and Housekeeping.srt (6.3 KB)
    • 2.1 exerciseSolutions.pdf (851.6 KB)
    • 3. Course Updates and News.mp4 (79.1 MB)
    • 3. Course Updates and News.srt (5.6 KB)
    2. Verification and Validation
    • 1. Mesh Refinement Studies, Verification and Validation.mp4 (629.0 MB)
    • 1. Mesh Refinement Studies, Verification and Validation.srt (83.2 KB)
    • 2. Exercise 1 - Solution.mp4 (29.7 MB)
    • 2. Exercise 1 - Solution.srt (12.5 KB)
    • 2.1 richardsonExtrapolation.m (5.4 KB)
    • 2.2 richardsonExtrapolation.py (5.3 KB)
    • 2.3 richardsonExtrapolation.xlsx (15.2 KB)
    • 3. Turbulence Modelling and Parameter Uncertainty.mp4 (321.0 MB)
    • 3. Turbulence Modelling and Parameter Uncertainty.srt (45.8 KB)
    • 4. Exercise 2 - Solution.mp4 (56.3 MB)
    • 4. Exercise 2 - Solution.srt (10.0 KB)
    • 5. How to Find Experimental Data.mp4 (129.4 MB)
    • 5. How to Find Experimental Data.srt (14.7 KB)
    • 6. Exercise 3 - Solution.mp4 (66.6 MB)
    • 6. Exercise 3 - Solution.srt (9.9 KB)
    3. Presenting Data
    • 1. Contour Plots.mp4 (432.5 MB)
    • 1. Contour Plots.srt (64.1 KB)
    • 2. Exercise 4 - Solution.mp4 (23.4 MB)
    • 2. Exercise 4 - Solution.srt (4.2 KB)
    • 3. Exercise 5 - Solution.mp4 (6.9 MB)
    • 3. Exercise 5 - Solution.srt (4.4 KB)
    • 4. Exercise 6 - Solution.mp4 (3.6 MB)
    • 4. Exercise 6 - Solution.srt (0.5 KB)
    • 5. Line Plots.mp4 (325.8 MB)
    • 5. Line Plots.srt (52.6 KB)
    • 5.1 plotAerofoilLiftCoefficient.m (3.5 KB)
    • 5.2 plotAerofoilLiftCoefficient.py (3.4 KB)
    • 5.3 plotAerofoilLiftCoefficient.py (3.4 KB)
    • 5.4 plotThrust.m (5.3 KB)
    • 5.5 plotThrust.py (6.3 KB)
    • 5.6 plotThrust.py (6.2 KB)
    • 6. Results Tables.mp4 (212.3 MB)
    • 6. Results Tables.srt (32.5 KB)
    • 7. Exercise 7 - Solution.mp4 (37.7 MB)
    • 7. Exercise 7 - Solution.srt (6.9 KB)
    • 8. Exercise 8 - Solution.mp4 (66.5 MB)
    • 8. Exercise 8 - Solution.srt (10.3 KB)
    • 9. Exercise 9 - Solution.mp4 (56.5 MB)
    • 9. Exercise 9 - Solution.srt (8.5 KB)
    4. Congratulations for Finishing the Course!
    • 1. Quiz.html (0.2 KB)
    • Bonus Resources.txt (0.3 KB)

Description

Computational Fluid Dynamics (CFD) for Professionals



https://TutGator.com

MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English + srt | Duration: 18 lectures (4h 25m) | Size: 2.36 GB
Skills to improve your CFD results
What you'll learn:
How to carry out mesh sensitivity studies correctly using Richardson Extrapolation
How to choose the best RANS turbulence model
How to find experimental measurements that you can use to validate your CFD
How to use contour plots correctly
How to use line plots and zoom boxes to enhance your CFD results

Requirements
Use of a CFD code of your choice (such as Fluent, OpenFOAM, CFX, Star, Fluidity, Saturne, etc.)
Access to an image editing programme (Inkscape, Corel Draw, Adobe Photoshop, MS Paint etc.)
Be able to create contour plots and line plots

Description
This course will show you the skills that are used by the top Computational Fluid Dynamics (CFD) engineers to separate themselves from the beginners. You will learn how to carry out a mesh sensitivity study correctly using Richardson Extrapolation. This is a technique that is recommended by the Journal of Fluids Engineering and is often not taught in engineering classes. You will also learn how to choose the right RANS turbulence model (k - epsilon, k - omega SST) and how to get the most out of your contour plots and line graphs. These skills will help you produce professional looking journal papers, conference papers, PhD and Masters theses and technical reports, that are significantly better than other scientists and engineers. Worked examples are provided throughout the course, with python code, MATLAB code and Excel spreadsheets provided (you can use whichever language you feel more comfortable with. The MATLAB code and python code is identical). By the end of the course you will be confident and ready to apply the skills in your own CFD calculations. The lessons in this course

Who this course is for
Masters and PhD level students
CFD Engineers and Researchers



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Udemy - Computational Fluid Dynamics (CFD) for Professionals


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2.5 GB
seeders:7
leechers:7
Udemy - Computational Fluid Dynamics (CFD) for Professionals


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