Fluid Dynamics with a Computational Perspective

Author:   Paul A. Durbin (Stanford University, California) ,  Gorazd Medic (Stanford University, California)
Publisher:   Cambridge University Press
ISBN:  

9781107699311


Pages:   362
Publication Date:   30 January 2014
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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Fluid Dynamics with a Computational Perspective


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Author:   Paul A. Durbin (Stanford University, California) ,  Gorazd Medic (Stanford University, California)
Publisher:   Cambridge University Press
Imprint:   Cambridge University Press
Dimensions:   Width: 17.80cm , Height: 1.90cm , Length: 25.40cm
Weight:   0.630kg
ISBN:  

9781107699311


ISBN 10:   1107699312
Pages:   362
Publication Date:   30 January 2014
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

1. Introduction to viscous flow; 2. Elements of computational analysis; 3. Creeping flow; 4. Intermediate Reynolds numbers; 5. High Reynolds number and boundary layer; 6. Turbulent flow; 7. Compressible flow; 8. Interfaces.

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Author Information

Paul Durbin is the Martin C. Jischke professor of Aerospace Engineering at Iowa State University. He was previously a professor in Mechanical Engineering at Stanford University. His research interests are in turbulence and transition, including computation, theory and analytical modeling. He is a member of AIAA, ASME, and a Fellow of APS. He is an associate editor of the ASME Journal of Fluids Engineering. He has extensive experience in teaching fluid dynamics and has written Statistical Theory and Modeling for Turbulent Flow (with John Wiley) and numerous articles. Gorazd Medic is a Research Associate at the Center for Integrated Turbulence Simulations of the Mechanical Engineering  Department at Stanford University. His research interests are in turbulence, numerical methods, and high performance computing. He is a member of AIAA, ASME, APS, and SIAM. He has extensive experience in computational fluid dynamics for a variety of applications ranging from aircraft engines to biomechanical systems.

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