Notes on Computational Fluid Dynamics PDF Download Free

Notes on Computational Fluid Dynamics PDF

Attributes of Notes on Computational Fluid Dynamics PDF

Notes on Computational Fluid Dynamics PDF (CFD) was written for people who use CFD in their work, research or study, providing essential knowledge to perform CFD analysis with confidence. It offers a modern perspective on CFD with the finite volume method, as implemented in OpenFOAM and other popular general-purpose CFD software.

Fluid dynamics, turbulence modelling and boundary conditions are presented alongside the numerical methods and algorithms in a series of short, digestible topics, or notes, that contain complete, concise and relevant information. The book benefits from the experience of the authors: Henry Weller, core developer of OpenFOAM since writing its first lines in 1989; and, Chris Greenshields, who has delivered over 650 days of CFD training with OpenFOAM.

Computational fluid dynamics (CFD) is the use of applied mathematics, physics and computational software to visualize how a gas or liquid flows — as well as how the gas or liquid affects objects as it flows past. Computational fluid dynamics is based on the Navier-Stokes equations. These equations describe how the velocity, pressure, temperature, and density of a moving fluid are related.

Computational fluid dynamics has been around since the early 20th century and many people are familiar with it as a tool for analyzing air flow around cars and aircraft. As the cooling infrastructure of server rooms has increased in complexity, CFD has also become a useful tool in the data center for analyzing thermal properties and modeling air flow. CFD software requires information about the size, content and layout of the data center. It uses this information to create a 3D mathematical model on a grid that can be rotated and viewed from different angles. CFD modeling can help an administrator identify hot spots and learn where cold air is being wasted or air is mixing.

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Illustrations of Notes on Computational Fluid Dynamics PDF

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Contents of the Textbook

The Writers

Notes on Computational Fluid Dynamics

Henry Weller created OpenFOAM (formerly “FOAM”) in 1989. He has been its Architect and Principal Developer from then to the present day.

Technical Director, CFD Direct.
Co-founder and Director/Member OpenFOAM Foundation (2011).
Architect of OpenFOAM.
Co-founder of OpenFOAM project (2004).
Created OpenFOAM (formerly “FOAM”) (1989).
Author of Notes on Computational Fluid Dynamics: General Principles.
Developed OpenFOAM expertise over 30 years.
Chemical Engineer.

Proportions of Notes on Computational Fluid Dynamics PDF

  • Publisher ‏ : ‎ CFD Direct Limited (April 11, 2022)
    Language ‏ : ‎ English
    Paperback ‏ : ‎ 314 pages
    International Standard Book Number-10 ‏ : ‎ 1399920782
    International Standard Book Number-13 ‏ : ‎ 978-1399920780
    Item Weight ‏ : ‎ 1.19 pounds
    Dimensions ‏ : ‎ 6 x 0.71 x 9 inches
  • Notes on Computational Fluid Dynamics PDF


Steve Camp
Rigorous yet approachable
May 5, 2022

This is THE book I have been waiting for that explains CFD, in particular the Finite Volume Method, in an easily approachable format, yet as rigorous as necessary. I won’t say it’s an *easy* book to read, but it is as easy as one could possibly make explaining computational fluid dynamics. With “maths on demand,” the reader will be introduced to the necessary mathematical topics as needed. I’d say a course in calculus would be good, and at least a basic course in fluid dynamics (though one might get away without that). A course in vector calculus would be of benefit, but not necessarily required.

With each topic broken down into two pages, this book is highly digestible, either as a learning tool, or a reference. I wish this book had been written many years ago.

Christopher Houthuysen
Well-Written and Informative
May 31, 2022

The book is concise and very well-written. I would highly recommend it as a supplement to more in-depth CFD based books. The target audience is for undergraduate-graduate students.

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