Coding Tutorials for Computational Fluid Dynamics
Dear visitor many thanks for downloading my book I hope it can be of help to your development. I have corrected and modified the previous copy. The updated new copy has been uploaded on the 25/01/2014. For all of you out there please pray for me to get a job so that I can get financial assistance in finishing this book. This book can be taught for a introductory CFD course.
I would appreciate any testimonials about this book. A sample of my MATLAB book is provided, its originally made up of more than 12 chapters, initially for now 5 chapters are available , click on the image on the right-hand side to download a copy, feedback is very much appreciated. Please accept my apologies for the spelling mistakes in the book. I will correct them with the progression of time. The intention to share the contents of this book for young researchers out there who want to learn and further their studies and have no sufficient funds to further their education qualifications. |
MATLAB DNS Low Speed Compressible Code for Air
Great news dear visitor, I provide here an educational DNS MATLAB code for the study of a low speed air compressible code. The code is to be used for educational purposes. The zipfile has a text file telling you how to run it, this is the first version one for the simplest constructed case, the Navier-Stokes equations are solved for a box without any input or output boundaries, the user after understanding the code can adapt it for his own interest, click on the icon below to download.
The user will have to validate it once he starts using it for the flow cases he implements it on. I would very much appreciate any input about my code. A more higher order differentiating scheme is required in addition to applying more complex boundary conditions, I hope this code contributes to your development. Coming soon will be the MATLAB Subsonic DNS Code Manual. The book is made up of 8 chapter the following chapter:
Chapter 1 how to run the code Chapter 2 Main Program Chapter 3 Solving the continuity Equation Chapter 4 Solving the Momentum Equation Chapter 5 Solving the Energy Equation Chapter 6 Time Stepping Chapter 7 Data Analysis Chapter 8 Mesh Generation Chapter 9 Boundary Conditions |
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