DIN ISO 17713-1-2007 Meteorology - Wind measurements - Part 1 Wind tunnel test methods for rotating anemometer performance (ISO 17713-1 2007) English version of DIN ISO 17713-1 200.pdf
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1、October 2007DEUTSCHE NORM English price group 12No part of this standard may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).!$IG“1383688www.din.deDDIN
2、 ISO 17713-1Meteorology Wind measurements Part 1: Wind tunnel test methods for rotating anemometer performance(ISO 17713-1:2007)English version of DIN ISO 17713-1:2007-10Meteorologie Windmessungen Teil 1: Prfverfahren in Windkanlen zur Ermittlung der Leistung vonRotationsanemometern (ISO 17713-1:200
3、7)Englische Fassung DIN ISO 17713-1:2007-10www.beuth.deDocument comprises 21 pages ICS 07.060This standard has been included in the VDI/DIN Handbook on air quality, Volume 1 B. DIN ISO 17713-1:2007-10 2 Contents Page National Foreword .2 National Annex NA (informative) Bibliography .3 Introduction 4
4、 1 Scope .5 2 Normative references .5 3 Terms and definitions 5 4 Symbols and abbreviated terms .6 5 Summary of test method 7 6 Documentation 10 7 Apparatus 10 7.1 Measuring system10 7.2 Recording techniques 11 8 Test procedures 11 8.1 Starting threshold (U0) 11 8.2 Transfer function ( = a + bR +) .
5、12 8.3 Distance constant (LU) 12 8.4 Off-axis response ratio (QU) Cup anemometers 13 8.5 Off-axis response ratio (QU) Vane-mounted propeller anemometer 13 8.6 Off-axis response ratio (QU) Fixed-axis propeller anemometers 14 8.7 Acceptance testing 14 9 Quality of the test method 14 9.1 General 14 9.2
6、 Wind tunnel 14 9.3 Repeatability 14 9.4 Uncertainty 15 Annex A (normative) Wind tunnel standard test conditions .16 Annex B (informative) Examples of formats for recording run data .18 Bibliography .21 National foreword This standard has been prepared by Technical Committee ISO/TC 146 “Air quality”
7、, Subcommittee SC 5 “Meteorology”. The responsible German body involved in its preparation was the Kommission Reinhaltung der Luft (KRdL) im VDI und DIN (VDI/DIN Air Quality Commission), Section II Umweltmeteorologie. The DIN Standards corresponding to the International Standards referred to in this
8、 document are as follows: ISO 5725-1 DIN ISO 5725-1 ISO 5725-2 DIN ISO 5725-2 DIN ISO 17713-1:2007-10 3 National Annex NA (informative) Bibliography DIN ISO 5725-1, Accuracy (trueness and precision) of measurement methods and results Part 1: General principles and definitions DIN ISO 5725-2, Accurac
9、y (trueness and precision) of measurement methods and results Part 2: Basic method for the determination of repeatability and reproducibility of a standard measurement method Introduction Cup and propeller anemometers are the most frequently used meteorological instruments for the measurement of mea
10、n wind speed in the near surface layer, that portion of the atmosphere which lies within a few tens of meters of the earths surface. Some types of cup and propeller anemometers are available for measuring wind speeds of a few tenths of a meter per second while other types can measure wind speeds app
11、roaching 100 ms1. These general purpose anemometers are used extensively for meteorology, aviation, air pollution, wind energy and numerous other applications. This part of ISO 17713 was developed in order to have a worldwide uniform set of test methods to define the characteristics of cup and prope
12、ller anemometers. This part of ISO 17713 will allow an end user to compare different manufacturers and different models of cup and propeller anemometers to determine the suitability for a particular application. 4 DIN ISO 17713-1:2007-10Meteorology Wind measurements Part 1: Wind tunnel test methods
13、for rotating anemometer performance 1 Scope 1.1 This part of ISO 17713 describes wind tunnel test methods for determining performance characteristics of rotating anemometers, specifically cup anemometers and propeller anemometers. 1.2 This part of ISO 17713 describes an acceptance test and unambiguo
14、us methods for measuring the starting threshold, distance constant, transfer function and off-axis response of a rotating anemometer in a wind tunnel. Note that when transferring values determined by these methods to atmospheric flow, there is a difference between anemometer performance in the free
15、atmosphere and in the wind tunnel. 2 Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document applies. ISO 5725-1, Accura
16、cy (trueness and precision) of measurement methods and results Part 1: General principles and definitions ISO 5725-2, Accuracy (trueness and precision) of measurement methods and results Part 2: Basic method for the determination of repeatability and reproducibility of a standard measurement method
17、3 Terms and definitions For the purposes of this document, the following terms and definitions apply. See also References 1, 2 and 3. 3.1 distance constant LUdistance the air flows past a rotating anemometer during the time it takes the cup wheel or propeller to reach (1 1/e) or 63 % of the equilibr
18、ium speed after a step increase change in air speed 3.2 off-axis response ratio QUratio of the indicated wind speed (U) at various angles of attack () to the product of the indicated wind speed (Ui) at zero angle of attack and the cosine of the angle of attack () and thus this ratio (QU) compares th
19、e actual off-axis response to a true cosine response 5 DIN ISO 17713-1:2007-103.3 starting threshold U0lowest wind speed at which a rotating anemometer starts and continues to turn and produce a measurable signal when mounted in its normal operating position NOTE The normal operating position for cu
20、p anemometers is with the axis of rotation perpendicular to the direction of air flow and the normal operating position for propeller anemometers is with the axis of rotation aligned parallel with the direction of the air flow. 3.4 transfer function relationship between predicted wind tunnel air spe
21、ed and the anemometer rotation rate throughout the specified working range of the anemometer: ( = a + bR + ) 4 Symbols and abbreviated terms a zero offset constant (metres per second) b wind passage (apparent pitch) constant or calibration constant (metres per revolution) DPwind distance passage (me
22、tres) per output pulse for anemometers with pulse output signal symbol for directional degrees e base of natural logarithms L average of the distance constants (metres) at 5 ms1and 10 ms1LUdistance constant (metres) at wind tunnel air speed U (metres per second) MRUwind speed measurement resolution,
23、 i.e. the smallest reported speed measurement increment (metres per second) for the anemometer QUoff-axis response ratio at wind tunnel air speed U (metres per second) r a shaft revolution R rate of rotation (revolutions per second, rs1) t time (seconds) tf time (seconds) to reach 74 % of the anemom
24、eter equilibrium speed Uf(metres per second) ti time (seconds) to reach 30 % of the anemometer equilibrium speed Uf(metres per second) T measurement time interval (seconds) TRtime resolution of a measurement (seconds) U wind tunnel air speed (metres per second, ms1) predicted wind speed (metres per
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