Fluid Mechanics - White原版完整文件.pdf
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1、Page iiiFluid MechanicsNinth EditionFrank M.WhiteUniversity of Rhode IslandHenry XueCalifornia State Polytechnic UniversityPage ivFLUID MECHANICS,NINTH EDITIONPublished by McGraw Hill LLC,1325 Avenue of the Americas,New York,NY 10121.Copyright2021 by McGraw Hill LLC.All rights reserved.Printed in th
2、e United States of America.Previouseditions 2016,2011,and 2008.No part of this publication may be reproduced or distributed in anyform or by any means,or stored in a database or retrieval system,without the prior written consent ofMcGraw Hill LLC,including,but not limited to,in any network or other
3、electronic storage ortransmission,or broadcast for distance learning.Some ancillaries,including electronic and print components,may not be available to customersoutside the United States.This book is printed on acid-free paper.1 2 3 4 5 6 7 8 9 LCR 24 23 22 21 20ISBN 978-1-260-25831-8(bound edition)
4、MHID 1-260-25831-9(bound edition)ISBN 978-1-260-44655-5(loose-leaf edition)MHID 1-260-44655-7(loose-leaf edition)Portfolio Manager:Beth BettcherProduct Developers:Heather Ervolino and Joan WeberSenior Marketing Manager:Shannon ODonnellContent Project Managers:Jane Mohr and Samantha DonisiBuyer:Susan
5、 K.CulbertsonDesigner:David W.HashContent Licensing Specialist:Lori HancockCover Image:Shutterstock/S.PytelCompositor:Aptara,Inc.All credits appearing on page or at the end of the book are considered to be an extension of thecopyright page.Library of Congress Cataloging-in-Publication DataNames:Whit
6、e,Frank M.,author.|Xue,Henry,author.Title:Fluid mechanics/Frank M.White,University of Rhode Island,HenryXue,California State Polytechnic University.Description:Ninth edition.|New York,NY:McGraw-Hill Education,2021|Includes bibliographical references and index.Identifiers:LCCN 2020040689|ISBN 9781260
7、258318(hardcover)|ISBN9781260446555(spiral bound)|ISBN 9781260446586(ebook)Subjects:LCSH:Fluid mechanics.Classification:LCC TA357.W48 2021|DDC 620.1/06dc23LC record available at https:/lccn.loc.gov/2020040689The Internet addresses listed in the text were accurate at the time of publication.The inclu
8、sion of awebsite does not indicate an endorsement by the authors or McGraw Hill LLC,and McGraw HillLLC does not guarantee the accuracy of the information presented at these sites.Page vAbout the AuthorsFrank M.White is Professor Emeritus of Mechanical and Ocean Engineering at the University ofRhode
9、Island.He is a native of Augusta,Georgia,and did his undergraduate studies at Georgia Tech,receiving a B.M.E.degree in 1954.Then he attended the Massachusetts Institute of Technology for anS.M.degree in 1956,returning to Georgia Tech to earn a Ph.D.degree in mechanical engineering in1959.He began te
10、aching aerospace engineering at Georgia Tech in 1957 and moved to the Universityof Rhode Island in 1964.He retired in January 1998.At the University of Rhode Island,Frank became interested in oceanographic and coastal flowproblems,and in 1966 he helped found the first Department of Ocean Engineering
11、 in the UnitedStates.His research interests have mainly been in viscous flow and convection heat transfer.Knownprimarily as a teacher and writer,he received the ASEE Westinghouse Teaching Excellence Award inaddition to seven University of Rhode Island teaching awards.His modest research accomplishme
12、ntsinclude some 80 technical papers and reports,the ASME Lewis F.Moody Research Award in 1973,and the ASME Fluids Engineering Award in 1991.He is a Fellow of the ASME and for 12 years servedas editor-in-chief of the ASME Journal of Fluids Engineering.He received a Distinguished Alumnusaward from Geo
13、rgia Tech in 1990 and was elected to the Academy of Distinguished Georgia TechAlumni in 1994.In addition to the present text,he has written three undergraduate textbooks:Fluid Mechanics;HeatTransfer;and Heat and Mass Transfer.He has served as a consulting editor of the McGraw-HillEncyclopedia of Sci
14、ence and Technology from 1992 until 2006,and on the ASME PublicationsCommittee until 2009.He continues to be inspired by his late wife,Jeanne,and lives in Narragansett,Rhode Island,with his dog Jack and his cat Kerry.Henry Xue is Professor of Mechanical Engineering at California State Polytechnic Un
15、iversity.Hereceived his B.S.degree from Jiangsu University in China,and his M.S.and Ph.D.degrees from theUniversity of Tokyo in Japan.Prior to joining California State Polytechnic University in 2000,he wason the mechanical engineering faculty of National University of Singapore.Henry has authored an
16、d coauthored many technical papers in computational fluid mechanics and heattransfer in built environments,microscale gaseous flow modeling and simulation using DSMC,andmicrocombustor and thermophotovoltaic energy systems.He is a member of the American Society ofMechanical Engineers and the American
17、 Society of Heating,Refrigeration and Air-ConditioningEngineers.He lives with his wife,Sophia,in Irvine,California.Page viTo JeannePage viiContentsPreface xiChapter 1Introduction 21.1Preliminary Remarks 31.2The Concept of a Fluid 41.3The Fluid as a Continuum 61.4Dimensions and Units 71.5System and C
18、ontrol Volume 161.6Thermodynamic Properties of a Fluid 181.7Viscosity and Other Secondary Properties 251.8Flow Patterns:Streamlines,Pathlines,and Streaklines 411.9Basic Flow Analysis Techniques 441.10The Fundamentals of Engineering(FE)Examination 451.11The History of Fluid Mechanics 46Summary 46Prob
19、lems 47Fundamentals of Engineering Exam Problems 55Comprehensive Problems 55References 58Chapter 2Pressure Distribution in a Fluid 602.1Pressure and Pressure Gradient 612.2Equilibrium of a Fluid Element 632.3Hydrostatic Pressure Distributions 642.4Application to Manometry 712.5Hydrostatic Forces on
20、Plane Surfaces 752.6Hydrostatic Forces on Curved Surfaces 822.7Hydrostatic Forces in Layered Fluids 852.8Buoyancy and Stability 882.9Pressure Distribution in Rigid-Body Motion 932.10Pressure Measurement 101Summary 105Problems 105Word Problems 128Fundamentals of Engineering Exam Problems 128Page viii
21、Comprehensive Problems 129Design Projects 131References 132Chapter 3Integral Relations for a Control Volume 1343.1Basic Physical Laws of Fluid Mechanics 1353.2The Reynolds Transport Theorem 1393.3Conservation of Mass 1473.4The Linear Momentum Equation 1523.5Frictionless Flow:The Bernoulli Equation 1
22、683.6The Angular Momentum Theorem 1783.7The Energy Equation 184Summary 195Problems 196Word Problems 224Fundamentals of Engineering Exam Problems 224Comprehensive Problems 225Design Project 227References 227Chapter 4Differential Relations for Fluid Flow 2284.1The Acceleration Field of a Fluid 2304.2T
23、he Differential Equation of Mass Conservation 2324.3The Differential Equation of Linear Momentum 2384.4The Differential Equation of Angular Momentum 2454.5The Differential Equation of Energy 2464.6Boundary Conditions for the Basic Equations 2494.7The Stream Function 2554.8Vorticity and Irrotationali
24、ty 2624.9Frictionless Irrotational Flows 2644.10Some Illustrative Incompressible Viscous Flows 270Summary 279Problems 279Word Problems 290Fundamentals of Engineering Exam Problems 291Comprehensive Problems 291References 292Chapter 5Dimensional Analysis and Similarity 2945.1Introduction 2955.2The Pri
25、nciple of Dimensional Homogeneity 2995.3The Pi Theorem 3015.4Nondimensionalization of the Basic Equations 3125.5Modeling and Similarity 321Summary 333Problems 334Word Problems 342Fundamentals of Engineering Exam Problems 342Comprehensive Problems 343Design Projects 344References 345Chapter 6Viscous
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