BS 7965-2013 Guide to the selection installation operation and calibration of diagonal path transit time ultrasonic flowmeters for industrial gas applications《工业气体应用的对角线路径时差法超声波流量计.pdf
《BS 7965-2013 Guide to the selection installation operation and calibration of diagonal path transit time ultrasonic flowmeters for industrial gas applications《工业气体应用的对角线路径时差法超声波流量计.pdf》由会员分享,可在线阅读,更多相关《BS 7965-2013 Guide to the selection installation operation and calibration of diagonal path transit time ultrasonic flowmeters for industrial gas applications《工业气体应用的对角线路径时差法超声波流量计.pdf(74页珍藏版)》请在麦多课文档分享上搜索。
1、BSI Standards PublicationBS 7965:2013Guide to the selection,installation, operation andcalibration of diagonal pathtransit time ultrasonicflowmeters for industrialgas applicationsPublishing and copyright informationThe BSI copyright notice displayed in this document indicates when the documentwas la
2、st issued. The British Standards Institution 2013Published by BSI Standards Limited 2013ISBN 978 0 580 80061 0ICS 17.120.10The following BSI references relate to the work on this document:Committee reference CPI/30/5Draft for comment 13/30268440 DCPublication historyFirst published April 2000Second
3、edition, October 2009Third (present) edition, October 2013Amendments issued since publicationDate Text affectedBS 7965:2013 BRITISH STANDARDContentsForeword ii1 Scope 12 Normative references 13 Symbols and abbreviations 24 Selection 35 Installation recommendations 146 Operational considerations 227
4、Ultrasonic flowmeter verification and calibration 358 Condition-based maintenance (CBM) 53AnnexesAnnex A (informative) Application of flow calibration results 56Annex B (informative) Methods for correcting a USMs flow measurement errorat flow calibration 59Annex C (informative) Thermowell installati
5、ons in bi-directional flowinstallations incorporating flow-conditioners 66Bibliography 67List of figuresFigure 1 General ray geometry for transit time velocity measurement 4Figure2Transducer designs 7Figure3Variations in path configuration 8Figure 4 Some typical cross-sectional acoustic path configu
6、rations 11Figure 5 Performance specification summary for Class 1 meters 23Figure 6 Performance specification summary for Class 2 meters 24Figure 7 Performance specification summary for Class 3 meters 25Figure 8 Performance specification summary for Class 4 meters 26Figure B.1 Un-corrected and FWME-c
7、orrected flow calibration 62Figure C.1 Bi-directional flow installation employing two USMs 66Figure C.2 Bi-directional flow installation employing one USM 66List of tablesTable 1 Symbols and abbreviations 2Table 2 Class performance criteria Meter requirements 12Table 3 System uncertainties and appli
8、cations System requirements 13Table 4 Common thermal expansion coefficients in the 0 to 100 C range 27Table 5 Calibration options and applications 36Table 6 Internal diameter tolerance 36Table7Tolerance for beam path length 37Table 8 Minimum nominal test flow rates 43Table 9 Spread or repeatability
9、(max. error minus min. error) versus number oftest points for a specified uncertainty in the mean 45Table 10 Effects of number of readings 45Table A.1 Sequential flow calibration results 58Table B.1 Example flow calibration data table for 200 mm diameter USM 60Table B.2 Flow weighted mean error calc
10、ulation 61Table B.3 FWME-corrected flow calibration data summary 61Table B.4 Example results from a typical flow calibration 63Table B.5 Example calibration results 64Table B.6 Calculation of percentage flowrate 65Summary of pagesThis document comprises a front cover, an inside front cover, pages i
11、to ii,pages 1 to 68, an inside back cover and a back cover.BRITISH STANDARD BS 7965:2013 The British Standards Institution 2013 iForewordPublishing informationThis British Standard is published by BSI Standards Limited, under licence fromThe British Standards Institution, and came into effect on 31
12、October 2013. Itwas prepared by Subcommittee CPI/30/5, Velocity based methods, under theauthority of Technical Committee CPI/30, Measurement of fluid flow in closedconduits. A list of organizations represented on this committee can be obtainedon request to its secretary.SupersessionThis British Stan
13、dard supersedes BS 7965:2009, which is withdrawn.Information about this documentThis is a full revision of the standard, and introduces the following principalchanges: further division of meter sizes into large, medium and small to incorporatemeter sizes with a nominal bore last viewed 14 October201
14、3.BRITISH STANDARD BS 7965:2013 The British Standards Institution 2013 13 Symbols and abbreviationsFor the purposes of this British Standard, the following symbols andabbreviations apply.Table 1 Symbols and abbreviationsSymbol Meaning UnitsA cross-sectional area of meter body m2Cfspeed of sound in a
15、 fluid m/sCI confidence interval d diameter of meter spool MEiindicated flow rate error in percent (%)F single calibration factor frfrequency Hzfivariable weighting factor for ith velocity path khtheoretical correction factor kruniform equivalent roughness mmK meter factor typically the ratio of ref
16、erence/meter flows l acoustic path length between two ultrasonic transducers MmA current in milli-amps mAP absolute static pressure of gas barqiflow rate m3/sqmaxmaximum volumetric flowrate of meter m3/sqminminimum volumetric flowrate of meter, as specified by themanufacturer, as being the flowrate
17、below which theexpanded error limit for the meter class is exceeded.m3/sqttransitional volumetric flowrate where the specifiedperformance of the meter changesm3/sqvvolumetric flow rate m3/sRaarithmetic mean deviation of the (roughness) profile mT temperature of fluid Ctabtransit time for ultrasound
18、to travel from transducer a totransducer bstbatransit time for ultrasound to travel from transducer b totransducer asUSMtolpredetermined tolerance %ttba tabstmean of taband tbast average transducer/electronic delay time. sviaveraged axial component of velocity along the pathbetween two transducersm/
19、sv mean pipe velocity m/sV Voltage Vwiconstant weighting factor for ith velocity path Wfiflow rate weighting factor X distance between transducers in the axial plane mZ compressibility of fluid angle between the direction of ultrasound and the axis ofthe pipea.c. alternating current Ad.c. direct cur
20、rent ABRITISH STANDARDBS 7965:20132 The British Standards Institution 2013Table 1 Symbols and abbreviationsAGC automatic gain control CBM Condition-based maintenance CFD Computational fluid dynamics EU-ETS European Union Emissions Trading Scheme FWME flow weighted mean error LDA LaserDoppler Anemome
21、try MSOS measured speed of sound PTZ pressure, temperature and compressibility SOS speed of sound m/sSNR signal-to-noise ratio SPU signal processing unit TSOS theoretical speed of sound USM ultrasonic flowmeter USMP USM package, including meter, meter tubes, flowconditioner and thermowellWME weighte
22、d mean error 4 SelectionCOMMENTARY ON CLAUSE 4There are a number of USMs currently in service and under development. Thisclause aims to present a generic overview of the meters available and offer guidanceas to their selection for specific applications.4.1 Principles of measurement4.1.1 Gas velocity
23、USMs are based on the measurement of the propagation time of acoustic wavesin a flowing medium. Generally, the assertion that the apparent velocity along apath is given by the speed of sound in the fluid at rest, Cf, plus the averagedaxial component of fluid velocity along the path between the trans
24、ducers, vi,isapplied. To eliminate the speed of sound from the subsequent derivation, transittimes are determined both in the direction of flow and against it. Consideringthe general ray geometry shown in Figure 1, the upstream and downstreamtransit times are given by the following equations:tab5L(C
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