Fluid Mechanics
McGraw-Hill Series in Mechanical Engineering
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Modern Compressible Flow
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Fluid Mechanics with Engineering Applications
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Fundamentals of Machine Elements
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Internal Combustion Engine Fundamentals
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Experimental Methods for Engineers
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Heat Transfer
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Convective Heat and Mass Transfer
Meirovitch
Fundamentals of Vibrations
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Design of Machinery
Palm
System Dynamics
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An Introduction to Finite Element Method
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Foundations of Materials Science and Engineering
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An Introduction to Combustion: Concepts and Applications
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Mechanical Design: An Integrated Approach
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The Mechanical Design Process
White
Fluid Mechanics
White
Viscous Fluid Flow
Fluid Mechanics
Seventh Edition
FrankM.White
University of Rhode Island
FLUID MECHANICS, Seventh EDITION
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Library of Congress Cataloging-in-Publication Data
White, Frank M.
Fluid mechanics / Frank M. White. 7th ed.
p. cm. (Mcgraw-Hill series in mechanical engineering)
Includes bibliographical references and index.
ISBN 9780073529349 (alk. paper)
1. Fluid mechanics. I. Title.
TA357.W48 2009
620.106dc22
2009047498
www.mhhe.com
About the Author
Frank M. White is Professor Emeritus of Mechanical and Ocean Engineering at the University of Rhode Island. He studied at Georgia Tech and M.I.T. In 1966 he helped found, at URI, the first department of ocean engineering in the country. Known primarily as a teacher and writer, he has received eight teaching awards and has written four textbooks on fluid mechanics and heat transfer.
From 1979 to 1990 he was editor-in-chief of the ASME Journal of Fluids Engineering and then served from 1991 to 1997 as chairman of the ASME Board of Editors and of the Publications Committee. He is a Fellow of ASME and in 1991 received the ASME Fluids Engineering Award. He lives with his wife, Jeanne, in Narragansett, Rhode Island.
To Jeanne
Contents
Chapter 1
Introduction
Chapter 2
Pressure Distribution in a Fluid
Chapter 3
Integral Relations for a Control Volume
Chapter 4
Differential Relations for Fluid Flow
Chapter 5
Dimensional Analysis and Similarity
Chapter 6
Viscous Flow in Ducts
Chapter 7
Flow Past Immersed Bodies
Chapter 8
Potential Flow and Computational Fluid Dynamics
Chapter 9
Compressible Flow
Chapter 10
Open-Channel Flow
Chapter 11
Turbomachinery
Preface
General Approach
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