Analysis of Transport Phenomena / Edition 2

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Overview

An ideal text for graduate level courses in transport phenomena for chemical engineers, Analysis of Transport Phenomena provides a unified treatment of momentum, heat, and mass transfer, emphasizing the concepts and analytical techniques that apply to all of these transport processes. Based on twenty years of teaching and extensive class testing, Analysis of Transport Phenomena offers students both extensive coverage of the topic and inclusion of modern examples from bioengineering, membrane science, and materials processing. It is mathematically self-contained and is also unique in its treatment of scaling and approximation techniques and its presentation of the finite Fourier transform method for solving partial differential equations.
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Editorial Reviews

From the Publisher

"Deen is the gold standard for teaching graduate-level transport phenomena to chemical engineers." -Yossef Elabd, Drexel University

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Product Details

  • ISBN-13: 9780199740284
  • Publisher: Oxford University Press
  • Publication date: 10/21/2011
  • Series: Topics in Chemical Engineering Series
  • Edition description: New Edition
  • Edition number: 2
  • Pages: 688
  • Sales rank: 447,833
  • Product dimensions: 6.40 (w) x 9.20 (h) x 1.50 (d)

Meet the Author

Professor William M. Deen is the Carbon P. Dubbs Professor of Chemical Engineering at the Massachusetts Institute of Technology.

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Table of Contents

Preface
Ch. 1 Diffusive Fluxes and Material Properties 1
Ch. 2 Conservation Equations and the Fundamentals of Heat and Mass Transfer 30
Ch. 3 Scaling and Approximation Techniques 73
Ch. 4 Solution Methods for Conduction and Diffusion Problems 132
Ch. 5 Fundamentals of Fluid Mechanics 208
Ch. 6 Unidirectional and Nearly Unidirectional Flow 251
Ch. 7 Creeping Flow 291
Ch. 8 Laminar Flow at High Reynolds Number 332
Ch. 9 Forced-Convection Heat and Mass Transfer in Confined Laminar Flows 370
Ch. 10 Forced-Convection Heat and Mass Transfer in Unconfined Laminar Flows 411
Ch. 11 Multicomponent Energy and Mass Transfer 433
Ch. 12 Transport in Buoyancy-Driven Flow 482
Ch. 13 Transport in Turbulent Flow 511
Appendix Vectors and Tensors 551
Index 583
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