AWWA M49-2017 Quarter-Turn Valves Head Loss Torque and Cavitation Analysis (Third Edition Incorporates errata May 1 2017).pdf
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1、Quarter- Turn Valves: Head Loss, Torque, and Cavitation Analysis Third Edition M49 Incorporates errata dated May 1, 2017Printed on recycled paper Printed in the United States of America American Water Works Association 6666 West Quincy Avenue Denver, CO 80235-3098 awwa.org hours of work by your fell
2、ow water professionals. Revenue from the sales of this AWWA material supports ongoing product development. Unauthorized distribution, either electronic or photocopied, is illegal and hinders AWWAs mission to support the water community. This AWWA content is the product of thousands of Manual of Wate
3、r Supply PracticesM49, Third Edition Quarter-Turn Valves: Torque, Head Loss, and Cavitation Analysis Copyright 2001, 2012, 2017, American Water Works Association All rights reserved. No part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, i
4、ncluding photocopy, recording, or any information or retrieval system, except in the form of brief excerpts or quotations for review purposes, without the written permission of the publisher. Disclaimer The authors, contributors, editors, and publisher do not assume responsibility for the validity o
5、f the content or any consequences of its use. In no event will AWWA be liable for direct, indirect, special, incidental, or consequential damages arising out of the use of information presented in this book. In particular, AWWA will not be responsible for any costs, including, but not limited to, th
6、ose incurred as a result of lost revenue. In no event shall AWWAs liability exceed the amount paid for the purchase of this book. Project Manager: Melissa Valentine Production: Studio Text Cover Design: Melanie Yamamoto Manuals Specialist: Sue Bach Library of Congress Cataloging-in-Publication Data
7、Names: Bosserman, Bayard E., II, author. | Holstrom, John R., author. |American Water Works Association, editor. Title: M49, quarter-turn valves : head loss, torque, and cavitation analysis/ by B.E. Bosserman and John R. Holstrom. Other titles: Quarter-turn valves Description: Third edition. | Denve
8、r, CO : American Water Works Association,2017 | Series: Manual M49 | Includes bibliographical references andindex. Identifiers: LCCN 2017001678 | ISBN 9781625762061 Subjects: LCSH: Water-pipes-Valves. Classification: LCC TD491 .B67 2017 | DDC 628.1/5-dc23 LC record available at https:/lccn.loc .gov/
9、2017001678 ISBN-13 978-1-62576-206-1 eISBN-13 978-1-61300-406-7iii AWWA Manual M49 Contents List of Figures, v List of Tables, vii Preface, ix Acknowledgments, xi Chapter 1 Introduction 1 Scope, 2 New Defi nitions, MRST and AST, 2 Diameter Assumptions, 3 Quarter-Turn Valve Design, 4 System Condition
10、s, 9 Defi nitions, 11 References, 13 Chapter 2 Valve Head Loss and Equivalent Resistance System Model 15 Discussion of Head Loss, Choking, and Cavitation, 15 Defi nitions, 16 Head Loss Calculations, 20 Reducer Installations, 23 Inherent and Installed Control Valve Flow Characteristics, 25 Equivalent
11、 Resistance System Model, 26 Variable Head Source Methodology, 31 Energy Calculations, 32 References, 35 Chapter 3 Valve Torque 37 Discussion of Torque Calculations, 37 Defi nitions, 39 Combining Torque Components, 42 Seating and Unseating Torque, 46 Packing and Hub Torque, 50 Bearing Torque, 51 Cen
12、ter of Gravity Torque, 55 Hydrostatic Torque, 56 Dynamic Torque, 58 Shaft Off set or Eccentricity Torque, 60 Other Components of Torque, 65 System Characteristics, 72 References, 76 Chapter 4 Valve Cavitation 77 Defi nitions, 77 Predicting Cavitation, 79 Cavitation Calculation Methodology Example, 8
13、2 Methods of Reducing Cavitation, 84 References, 84iv QUARTER-TURN VALVES: HEAD LOSS, TORQUE, AND CAVITATION ANALYSIS AWWA Manual M49 Chapter 5 Valve Testing 85 Uncertainty, 85 Testing Requirements, 86 Test Procedure, 87 Seating/Unseating Test Procedure, 93 References, 95 Chapter 6 Valve Application
14、s 97 Actuator Sizing, 97 Extended Bonnet Installation, 100 Effects of Pipe Installations, 101 Typical Range of Some Coefficients, 111 Cautions, 113 Summary, 114 References, 115 Appendix A, 117 Appendix B, 119 Appendix C, 121 Index, 129 List of Manuals, 133v AWWA Manual M49 Figures 1-1 Valve disc, po
15、rt, and pipe diameters, 4 1-2 Typical ball valve construction, 6 1-3 Typical butt erfl y valve construction, 7 1-4 Typical plug valve construction, 8 1-5 Typical rotary cone valve construction, 9 1-6 Butt erfl y valve off set designs, 10 1-7 Free discharge and reservoir inlet installations of BFVs,
16、11 2-1 Typical quarter-turn valve fl ow, diff erential pressure, cavitation, and choking graphical explanation, 17 2-2 Smaller-than-line-sized butt erfl y valve installation, 22 2-3 Reducer geometry, 23 2-4 Typical inherent valve characteristics, 26 2-5 Installed valve characteristics, 26 2-6 Equiva
17、lent resistance system model, 27 2-7 Example equivalent resistance system model diagram, 30 2-8 Graphical relationship between head loss and velocity, 31 2-9 Comparative operating costs by valve type, 34 3-1 Basic closure member design geometries, 40 3-2 Horizontal valve shaft in a horizontal pipe,
18、41 3-3 Seat-side, reverse, and shaft-side direct fl ow direction orientations, 42 3-4 Active torque sign convention; positive values tend to close the valve, 42 3-5 Dynamic torque (T d ) and bearing torque (T b ) during valve closure, 45 3-6 One-, two-, and three-pump system operating curves, 45 3-7
19、 Multiple-pump installation; example shown with butt erfl y valves, 46 3-8 Butt erfl y valve seating torque, 46 3-9 Plug valve seat perimeter and port area, 48 3-10 Butt erfl y valve packing and hub seal torque (T p ), 50 3-11 Bearing friction torque (T b ), 52 3-12 Center of gravity torque (T cg ),
20、 55 3-13 Hydrostatic torque (T h ), 57 3-14 Dynamic torque (T d ) for a symmetrical disc butt erfl y valve, 59 3-15 Dynamic torque coeffi cient (C t ) graph for butt erfl y valves with symmetrical and off set closure members, 60 3-16 Dynamic torque (T d ) for a butt erfl y valve with symmetric and o
21、ff set discs, 61 3-17 Total opening torque (T to ) for a 20-in. to 30-in. butt erfl y valve with symmetric and off set discs (in both fl ow directions), 61vi QUARTER-TURN VALVES: HEAD LOSS, TORQUE, AND CAVITATION ANALYSIS AWWA Manual M49 3-18 Total opening torque (T to ) for a 78-in. to 96-in. butte
22、rfly valve with symmetric and offset discs (in both flow directions), 62 3-19 Total closing torque (T tc ) for a 20-in. to 30-in. butterfly valve with symmetric and offset discs, 62 3-20 Total closing torque (T tc ) for a 78-in. to 96-in. butterfly valve with symmetric and offset discs, 63 3-21 Shaf
23、t offset or eccentricity torque (T ecc ), 63 3-22 Bearing torque caused by closure member and shaft(s) weight orientation angles, 66 3-23 Center of gravity torque pipe angle definition, 68 3-24 Valve shaft and pipe orientation from vertical axis for center of gravity torque, 68 3-25 Valve shaft and
24、pipe orientation from vertical axis for hydrostatic and bearing torque, 70 3-26 Example torque calculation summary graph, 75 4-1 Cavitation zones downstream of a butterfly valve disc, 78 4-2 Typical cavitation index levels and acceleration readings, 80 4-3 Flow rate and acceleration readings, 80 4-4
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