ASTM D5366-1996(2011) Standard Test Method for Determining the Dynamic Performance of a Wind Vane《风向标动力特性测定的标准试验方法》.pdf
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1、Designation: D5366 96 (Reapproved 2011)Standard Test Method forDetermining the Dynamic Performance of a Wind Vane1This standard is issued under the fixed designation D5366; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year o
2、f last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the determination of the startingthreshold, delay distance, and overshoot ratio of a wind va
3、nefrom direct measurements in a wind tunnel. This test method isapplicable only to wind vanes having measurable overshoot.1.2 This test method provides for determination of theperformance of a system consisting of a wind vane and itsassociated position-to-output transducer in wind tunnel flow.Use of
4、 values determined by this test method to describeperformance in atmospheric flow of a wind direction measur-ing system incorporating the vane must be done with anunderstanding of the differences between the two systems andthe two environments.1.3 This standard does not purport to address all of the
5、safety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Terminology2.1 Definitions:2.1.1 delay distance (D)the distance the
6、air flows past awind vane during the time it takes the vane to return to 50 %of the initial displacement.2.1.2 overshoot (un)the amplitude of a deflection of awind vane as it oscillates about uBafter release from an initialdisplacement.2.1.3 overshoot ratio (V)the ratio of two successiveovershoots,
7、as expressed by the equation:V5un11!/un(1)where unand u(n+1)are the n and n + 1 overshoots, respec-tively. In practice, since deflections after the first (to the sideopposite the release point are normally small, the initial releasepoint (that is, the n = 0 deflection) and the first deflection after
8、release (n = 1) are used in determining the overshoot ratio.2.1.4 starting threshold (Uo)the lowest speed at which thevane can be observed or measured moving from a 10 offset ina wind tunnel.2.2 Symbols:D (m) delay distanceUo(m/s) starting thresholdV (none) overshoot ratioh (none) damping ratiold(m)
9、 damped natural wavelengthun(degrees) overshoot; maximum angular excursionuo(degrees) reference directionuB(degrees) vane equilibrium positionuB uo(degrees) dynamic vane bias2.3 Calculated or Estimated Values:2.3.1 damping ratio (h)calculated from the overshootratio (1,2).2h5ln1/V!p21 ln1/V!#2!0.5(2
10、)2.3.2 damped natural wavelength (ld)at sea level in theU.S. Standard Atmosphere, damped natural wavelength isrelated to delay distance and damping ratio by the empiricalexpression (1,2).2ld5D6.0 2 2.4h!1 2h2!0.5(3)3. Summary of Test Method3.1 Reference Direction (uo, degrees) is the indicatedangula
11、r position of the vane when aligned along the centerlineof the wind tunnel.3.2 Vane Equilibrium Position (uB, degrees) is the finalresting position of the vane after motion in response to aninitial displacement. Ideally, uB= uo.3.3 Dynamic Vane Bias (uB uo, degrees) is the displace-ment of the vane
12、from the wind tunnel centerline at 5 m/s. Thismeasurement will identify wind vanes with unbalanced aero-dynamic response because of damage (for example, bent tail)or poor design.3.4 Starting Threshold (Uo, m/s) is determined by observ-ing or measuring the lowest speed at which the vane, releasedfrom
13、 a 10 offset position in a wind tunnel, moves toward uB.Movement must be distinguishable from vibration.3.5 Delay Distance (D, m) may be determined at a numberof wind speeds but shall include 5 m/s and 10 m/s. It iscomputed from the time required for the vane to reach 50 % ofthe initial displacement
14、 from 10 off uB. This time in seconds1This test method is under the jurisdiction of ASTM Committee D22 on AirQuality and is the direct responsibility of Subcommittee D22.11 on Meteorology.Current edition approved Oct. 1, 2011. Published October 2011. Originallyapproved in 1993. Last previous edition
15、 approved in 2007 as D5366 - 96(2007).DOI: 10.1520/D5366-96R11.2The boldface numbers in parentheses refer to the list of references at the end ofthis standard.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.is converted to delay dist
16、ance by multiplying by the windtunnel speed in metres per second. Tests shall include an equalnumber of displacements to each side of uB.3.6 Overshoot Ratio (V) may be determined at the sametime as the delay distance. The maximum angular excursion onthe opposite side of uBfrom the initial 10 displac
17、ement fromuBis measured. This value is divided by the initial displacementto obtain V.4. Significance and Use4.1 This test method will provide a standard for comparisonof wind vanes of different types. Specifications by regulatoryagencies and industrial societies (3-5) have stipulated perfor-mance v
18、alues. This test method provides an unambiguousmethod for measuring starting threshold, delay distance, andovershoot ratio.5. Apparatus5.1 Wind Tunnel (6):5.1.1 SizeThe wind tunnel shall be large enough so thatthe total projected area of supports, sensor apparatus, and thevane in its displaced posit
19、ion is less than 5 % of the cross-sectional area of its test section.5.1.2 Speed RangeThe wind tunnel shall have a speedcontrol that will allow the flow rate to be varied from 0 to atleast 10 m/s. The speed control shall maintain the flow ratewithin 60.2 m/s.5.1.3 Turbulence and SwirlAcross the volu
20、me to beoccupied by the vane, the flow profile shall vary by no morethan 1 % about the mean speed and shall exhibit a turbulenceof less than 1 %. (Warning Swirl in the wind tunnel mayinfluence starting threshold measurements. Variations in themeasurement of uBa low speeds likely indicate the existen
21、ce ofswirl.)5.1.4 CalibrationThe mean flow rate shall be verified atthe mandatory speeds of 5 and 10 m/s by use of transferstandards that have been calibrated by the National Institute ofStandards and Technology (formerly called the National Bu-reau of Standards)3or by a fundamental physical method.
22、5.1.4.1 Speeds below 2 m/s for threshold determinationshall be verified by a sensitive anemometer or by somefundamental time and distance technique, such as measuringthe transition time of smoke puffs, soap bubbles, or heat puffsbetween two points separated by a known distance.5.1.5 EnvironmentThe t
23、emperature and pressure of theenvironment within the wind tunnel test section shall bereported. Differences of greater than 3 % in the density of airwithin the test environment may result in poor inter-comparability of independent measurements of starting thresh-old, delay distance, and overshoot ra
24、tio since these values aredensity dependent.5.2 Measuring System:5.2.1 DirectionThe resolution of the wind vane position-tooutput transducer limits the resolution of the measure-ments. The accuracy of the positiontooutput conversion shallbe within 60.1. (WarningAvoid potentiometer dead spotsor cross
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