ASTM D5640-1995(2003) Standard Guide for Selection of Weirs and Flumes for Open-Channel Flow Measurement of Water《用于明渠水流量测量的溢流堰和斜槽的选择的标准导则》.pdf
《ASTM D5640-1995(2003) Standard Guide for Selection of Weirs and Flumes for Open-Channel Flow Measurement of Water《用于明渠水流量测量的溢流堰和斜槽的选择的标准导则》.pdf》由会员分享,可在线阅读,更多相关《ASTM D5640-1995(2003) Standard Guide for Selection of Weirs and Flumes for Open-Channel Flow Measurement of Water《用于明渠水流量测量的溢流堰和斜槽的选择的标准导则》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 5640 95 (Reapproved 2003)Standard Guide forSelection of Weirs and Flumes for Open-Channel FlowMeasurement of Water1This standard is issued under the fixed designation D 5640; the number immediately following the designation indicates the year oforiginal adoption or, in the case of rev
2、ision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This guide covers recommendations for the selection ofweirs and flumes for the measurement of the
3、volumetric flowrate of water and wastewater in open channels under a varietyof field conditions.1.2 This guide emphasizes the weirs and flumes for whichASTM standards are available, namely, thin-plate weirs, broad-crested weirs, Parshall flumes, and Palmer-Bowlus (and otherlong-throated) flumes. How
4、ever, reference is also made toother measurement devices and methods that may be useful inspecific situations.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safet
5、y and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:D 1129 Terminology Relating to Water2D 1941 Test Method for Open Channel Flow Measurementof Water with the Parshall Flume2D 3858 Test Method for Open-Channel Flow
6、Measurementof Water by Velocity-Area Method2D 5242 Test Method for Open-Channel Flow Measurementof Water with Thin-Plate Weirs2D 5389 Test Method for Open-Channel Flow Measurementof Water by Acoustic Velocity Meter Systems2D 5390 Test Method for Open-Channel Flow Measurementof Water with Palmer-Bowl
7、us Flume2D 5614 Test Method for Open-Channel Flow Measurementof Water with Broad-Crested Weirs22.2 ISO Standard:ISO 555-1973: Liquid Flow Measurement in OpenChannelsDilution Methods for Measurement of SteadyFlowConstant-Rate Injection Method33. Terminology3.1 DefinitionsFor definitions of terms used
8、 in this guide,refer to Terminology D 1129.3.2 Definitions of Terms Specific to This Standard:3.2.1 blackwateran increase in the depth of flow upstreamof a channel obstruction, in this case a weir or flume.3.2.2 contracted weirscontractions of thin-plate weirsrefer to the widths of weir plate betwee
9、n the notch and thesidewalls of the approach channel. In fully contracted weirs,the ratio of the notch area to the cross-sectional area of theapproach channel is small enough for the shape of the channelto have little effect. In suppressed (full-width) rectangularweirs, the contractions are suppress
10、ed, and the weir crestextends the full width of the channel.3.2.3 crestin rectangular thin-plate weirs, the horizontalbottom of the overflow section; in broad-crested weirs andflumes, the plane, level floor of the flow section.3.2.4 critical flowopen-channel flow in which the energy,expressed in ter
11、ms of depth plus velocity head, is a minimumfor a given flow rate and channel.3.2.4.1 DiscussionThe Froude number is unity at criticalflow.3.2.5 Froude numbera dimensionless number expressingthe ratio of inertial to gravity forces in free-surface flow. It isequal to the average velocity divided by t
12、he square root of theproduct of the average depth and the acceleration due togravity.3.2.6 headin this context, the depth of flow referenced tothe crest of the weir or flume and measured at a specifiedlocation; this depth plus the velocity head are often termed thetotal head or total energy head.3.2
13、.7 hydraulic jumpan abrupt transition from supercriti-cal to subcritical or tranquil flow, accompanied by considerableturbulence or gravity waves, or both.3.2.8 long-throated flumea flume in which the prismaticthroat is long enough, relative to the head, for a region ofessentially critical flow to d
14、evelop on the crest.1This guide is under the jurisdiction of ASTM Committee D19 on Water and isthe direct responsibility of Subcommittee D19.07 on Sediments, Geomorphology,and Open-Channel Flow.Current edition approved June 10, 2003. Published August 2003. Originallyapproved in 1995. Last previous e
15、dition approved in 1999 as D 5640 95 (1999).2Annual Book of ASTM Standards, Vol 11.01.3Available from American National Standards Institute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 100361Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United
16、States.3.2.9 nappethe curved sheet or jet of water overfalling aweir.3.2.10 notchthe overflow section of a triangular weir or ofa rectangular weir with side contractions.3.2.11 primary instrumentthe device (in this case, a weiror flume) that creates a hydrodynamic condition that can besensed by the
17、secondary instrument.3.2.12 rangeabilitythe spread between the maximum,Qmax, and minimum, Qmin, flow rates that a measuringinstrument can usefully and reliably accommodate; this may bedescribed as the ratio Qmax/Qmin.3.2.13 secondary instrumentin this case, a device thatmeasures the head on the weir
18、 or flume; it may also convert thismeasured head to an indicated flowrate or could totalize theflow.3.2.14 subcritical flowopen-channel flow that is deeperand at a lower velocity than critical flow for the same flow rate;sometimes called tranquil flow.3.2.14.1 DiscussionThe Froude number is less tha
19、n unityfor this flow.3.2.15 submergencethe ratio of downstream head to up-stream head on a weir or flume. Submergence greater than acritical value affects the discharge for a given upstream head.3.2.16 supercritical flowopen-channel flow that is shal-lower and at higher velocity than critical flow f
20、or the same flowrate.3.2.16.1 DiscussionThe Froude number is greater thanunity for this flow.3.2.17 throatthe constricted portion of a flume.3.2.18 velocity headthe square of the average velocitydivided by twice the acceleration due to gravity.4. Significance and Use4.1 Each type of weir and flume p
21、ossesses advantages anddisadvantages relative to the other types when it is consideredfor a specific application; consequently, the selection processoften involves reaching a compromise among several features.This guide is intended to assist the user in making a selectionthat is hydraulically, struc
22、turally, and economically appropriatefor the purpose.4.2 It is recognized that not all open-channel situations areamenable to flow measurement by weirs and flumes and that insome cases, particularly in large streams, discharges may bestbe determined by other means. (See 6.2.2.)5. Weirs and Flumes5.1
23、 Weirs:5.1.1 Weirs are overflow structures of specified geometriesfor which the volumetric flow rate is a unique function of asingle measured upstream head, the other elements in thehead-discharge relation having been experimentally or analyti-cally determined. Details of the individual weirs may be
24、 foundin the ASTM standards cited as follows:5.1.2 Standard WeirsThe following weirs, for whichASTM standards are available, are considered in this guide:5.1.2.1 Thin-plate weirs (see Test Method D 5242).(1) Rectangular weirs (see Fig. 1).(2) Triangular (V-notch) weirs (see Fig. 2).5.1.2.2 Broad-cre
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