IEC 60534-2-1-2011 Industrial-process control valves - Part 2-1 Flow capacity - Sizing equations for fluid flow under installed conditions《工业过程控制阀.第2-1部分 流通能力.安装条件下不可压缩流体流量的校准方程式》.pdf
《IEC 60534-2-1-2011 Industrial-process control valves - Part 2-1 Flow capacity - Sizing equations for fluid flow under installed conditions《工业过程控制阀.第2-1部分 流通能力.安装条件下不可压缩流体流量的校准方程式》.pdf》由会员分享,可在线阅读,更多相关《IEC 60534-2-1-2011 Industrial-process control valves - Part 2-1 Flow capacity - Sizing equations for fluid flow under installed conditions《工业过程控制阀.第2-1部分 流通能力.安装条件下不可压缩流体流量的校准方程式》.pdf(116页珍藏版)》请在麦多课文档分享上搜索。
1、 IEC 60534-2-1 Edition 2.0 2011-03 INTERNATIONAL STANDARD NORME INTERNATIONALE Industrial-process control valves Part 2-1: Flow capacity Sizing equations for fluid flow under installed conditions Vannes de rgulation des processus industriels Partie 2-1: Capacit dcoulement Equations de dimensionnemen
2、t pour lcoulement des fluides dans les conditions dinstallation IEC 60534-2-1:2011 THIS PUBLICATION IS COPYRIGHT PROTECTED Copyright 2011 IEC, Geneva, Switzerland All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized in any form or by any means, e
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16、sur cette publication ou si vous avez des questions, visitez le FAQ du Service clients ou contactez-nous: Email: csciec.ch Tl.: +41 22 919 02 11 Fax: +41 22 919 03 00 IEC 60534-2-1 Edition 2.0 2011-03 INTERNATIONAL STANDARD NORME INTERNATIONALE Industrial-process control valves Part 2-1: Flow capaci
17、ty Sizing equations for fluid flow under installed conditions Vannes de rgulation des processus industriels Partie 2-1: Capacit dcoulement Equations de dimensionnement pour lcoulement des fluides dans les conditions dinstallation INTERNATIONAL ELECTROTECHNICAL COMMISSION COMMISSION ELECTROTECHNIQUE
18、INTERNATIONALE XA ICS 23.060.40; 25.040.40 PRICE CODE CODE PRIX ISBN 978-2-88912-399-5 Registered trademark of the International Electrotechnical Commission Marque dpose de la Commission Electrotechnique Internationale 2 60534-2-1 IEC:2011 CONTENTS FOREWORD . 4 1 Scope . 6 2 Normative references . 6
19、 3 Terms and definitions . 7 4 Symbols . 8 5 Installation 9 6 Sizing equations for incompressible fluids 10 6.1 Turbulent flow . 10 6.2 Pressure differentials 11 6.2.1 Sizing pressure differential, p sizing. 11 6.2.2 Choked pressure differential, p choked. 11 6.2.3 Liquid critical pressure ratio fac
20、tor, F F. 11 6.3 Non-turbulent (laminar and transitional) flow . 11 7 Sizing equations for compressible fluids . 11 7.1 General . 11 7.2 Pressure differentials 12 7.2.1 Sizing pressure drop ratio, x sizing. 12 7.2.2 Choked pressure drop ratio, x choked12 7.3 Specific heat ratio factor, F . 12 7.4 Ex
21、pansion factor, Y . 13 7.5 Compressibility factor, Z 13 7.6 Non-turbulent (laminar and transitional) flow . 14 8 Correction factors common to both incompressible and compressible flow . 14 8.1 Piping geometry correction factors 14 8.2 Estimated piping geometry factor, F P14 8.3 Estimated combined li
22、quid pressure recovery factor and piping geometry factor with attached fittings, F LP. 15 8.4 Estimated pressure differential ratio factor with attached fittings, x TP. 16 9 Reynolds Number, Re V16 Annex A (normative) Sizing equations for non-turbulent flow 18 Annex B (normative) Sizing equations fo
23、r fluid flow through multistage control valves 21 Annex C (informative) Piping factor computational considerations . 28 Annex D (informative) Engineering Data 34 Annex E (informative) Reference calculations 41 Bibliography 54 Figure 1 Reference pipe section for sizing . 10 Figure B.1 Multistage mult
24、ipath trim . 23 Figure B.2 Multistage single path trim 24 Figure B.3 Disk from a continuous resistance trim The complete trim consists of a number of these disks stacked together. . 25 Figure B.4 Sectional view of continuous resistance trim with multiple flow passages having vertical undulations 25
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