Multiphysics Modeling Series

CFD Module

Hardback
May 2015
9781937585433
More details
  • Publisher
    Mercury Learning and Information
  • Published
    20th May 2015
  • ISBN 9781937585433
  • Language English
  • Pages 346 pp.
  • Size 6" x 9"
  •    Request Exam Copy
$49.95
Lib E-Book

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May 2015
9781942270614
More details
  • Publisher
    Mercury Learning and Information
  • Published
    15th May 2015
  • ISBN 9781942270614
  • Language English
  • Pages 346 pp.
  • Size 6" x 9"
$124.95
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May 2015
9781942270621
More details
  • Publisher
    Mercury Learning and Information
  • Published
    15th May 2015
  • ISBN 9781942270621
  • Language English
  • Pages 346 pp.
  • Size 6" x 9"
  •    Request E-Exam Copy
$49.95

This book can be used as a reference for the topic of turbulence modeling, especially in an engineering modeling and simulation course or as a tool for professionals on practical applications. Turbulent flow modeling has many applications in industry. The relevant numerical methods have advanced to the level that could be used by industry professionals to model many natural turbulent flows with acceptable accuracy. In this book we cover the fundamentals of turbulence, modeling techniques, and algorithms (including RANS) available in COMSOL® as well as providing several modeling examples and instructions for building these models. The companion DVD includes models and figures discussed in the book.

eBook Customers: Companion files are available for downloading with order number/proof of purchase by writing to the publisher at info@merclearning.com.

Features:

•Includes companion DVD with models and figures discussed in the book
•Explains the physics and principles of turbulence and provides modeling examples using COMSOL

Chapter 1: Turbulence Fundamentals-A Summary.
Chapter 2: Turbulence Modeling Methods.
Chapter 3: COMSOL 4.4-Overview and Turbulence Module.
Chapter 4: Solved Examples.
On the DVD.

Mehrzad Tabatabaian, PhD

Mehrzad Tabatabaian holds a PhD from McGill University and is currently Chair of the British Columbia Institute of Technology School of Energy Research Committee. He has published several papers for scientific journals and conferences, and he has written textbooks on multiphysics and turbulent flow modeling, thermodynamics, and direct energy conversion. He holds several registered patents in the energy field and currently teaches courses in renewable energy and thermal engineering.