Damped Wave Transport and Relaxation

Author:   Kal Renganathan Sharma (School of Chemical and Biotechnology, SASTRA Deemed University, Shanmugha Arts, Science, Technology & Research Academy, Thanjavur, India)
Publisher:   Elsevier Science & Technology
ISBN:  

9780444519436


Pages:   462
Publication Date:   05 October 2005
Format:   Hardback
Availability:   Out of print, replaced by POD   Availability explained
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Damped Wave Transport and Relaxation


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Overview

Transient problems in transport phenomena have a variety of applications, ranging from drug delivery systems in chemotherapy in bioengineering to heat transfer to surfaces in fluidized bed combustion (FBC) boilers in mechanical engineering. However, the attention given to transient problems is disproportionate with its occurrence in the industry. Damped Wave Transport and Relaxation looks at transient problems in heat, mass and momentum transfer: including non-Fourier effects of conduction and relaxation; non-Fick effects of mass diffusion and relaxation; and non-Newtonian effects of viscous momentum transfer and relaxation. The author also reviews applications to current problems of interest and uses worked examples and illustrations to describe the manifestations of using generalized transport equations. This book is intended for graduate students in transport phenomena and is an ideal reference source for industrial engineers.

Full Product Details

Author:   Kal Renganathan Sharma (School of Chemical and Biotechnology, SASTRA Deemed University, Shanmugha Arts, Science, Technology & Research Academy, Thanjavur, India)
Publisher:   Elsevier Science & Technology
Imprint:   Elsevier Science Ltd
Dimensions:   Width: 16.50cm , Height: 2.40cm , Length: 24.00cm
Weight:   0.990kg
ISBN:  

9780444519436


ISBN 10:   0444519432
Pages:   462
Publication Date:   05 October 2005
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Out of Print
Availability:   Out of print, replaced by POD   Availability explained
We will order this item for you from a manufatured on demand supplier.

Table of Contents

1. The Damped Wave Conduction and Relaxation Equation. 2. Transient Heat Conduction and Relaxation. 3. Transient Mass Diffusion and Relaxation. 4. Transient Momentum Transfer and Relaxation. 5. Applications.

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