ASTM G167-2005 Standard Test Method for Calibration of a Pyranometer Using a Pyrheliometer《用直接日射强度表校正日射强度计的标准试验方法》.pdf
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1、Designation: G 167 05Standard Test Method forCalibration of a Pyranometer Using a Pyrheliometer1This standard is issued under the fixed designation G 167; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A
2、 number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.INTRODUCTIONAccurate and precise measurements of total global (hemispherical) solar irradiance are required inthe assessment of irradiance and ra
3、diant exposure in the testing of exposed materials, determinationof the energy available to solar collection devices, and assessment of global and hemispherical solarradiation for meteorological purposes.This test method requires calibrations traceable to the World Radiometric Reference (WRR), which
4、represents the SI units of irradiance. The WRR is determined by a group of selected absolutepyrheliometers maintained by the World Meteorological Organization (WMO) in Davos, Switzerland.Realization of the WRR in the United States, and other countries, is accomplished by theintercomparison of absolu
5、te pyrheliometers with the World Radiometric Group (WRG) through aseries of intercomparisons that include the International Pyrheliometric Conferences held every fiveyears in Davos. The intercomparison of absolute pyrheliometers is covered by procedures adopted byWMO and is not covered by this test
6、method.It should be emphasized that “calibration of a pyranometer” essentially means the transfer of theWRR scale from a pyrheliometer to a pyranometer under specific experimental procedures.1. Scope1.1 This test method covers an integration of previous TestMethod E 913 dealing with the calibration
7、of pyranometerswith axis vertical and previous Test Method E 941 on calibra-tion of pyranometers with axis tilted. This amalgamation of thetwo methods essentially harmonizes the methodology with ISO9846.1.2 This test method is applicable to all pyranometersregardless of the radiation receptor employ
8、ed, and is applicableto pyranometers in horizontal as well as tilted positions.1.3 This test method is mandatory for the calibration of allsecondary standard pyranometers as defined by the WorldMeteorological Organization (WMO) and ISO 9060, and forany pyranometer used as a reference pyranometer in
9、thetransfer of calibration using Test Method E 842.1.4 Two types of calibrations are covered: Type I calibra-tions employ a self-calibrating, absolute pyrheliometer, andType II calibrations employ a secondary reference pyrheliom-eter as the reference standard (secondary reference pyrheliom-eters are
10、 defined by WMO and ISO 9060).1.5 Calibrations of reference pyranometers may be per-formed by a method that makes use of either an altazimuth orequatorial tracking mount in which the axis of the radiometersradiation receptor is aligned with the sun during the shadingdisk test.1.6 The determination o
11、f the dependence of the calibrationfactor (calibration function) on variable parameters is calledcharacterization. The characterization of pyranometers is notspecifically covered by this method.1.7 This test method is applicable only to calibration pro-cedures using the sun as the light source.1.8 T
12、his 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 safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Docume
13、nts2.1 ASTM Standards:2E 772 Terminology Relating to Solar Energy ConversionE 824 Test Method for Transfer of Calibration from Refer-ence to Field Radiometers2.2 WMO Document:World Meteorological Organization (WMO), “Measure-ment of Radiation” Guide to Meteorological Instruments1This test method is
14、under the jurisdiction of ASTM Committee G03 onWeathering and Durability and is the direct responsibility of Subcommittee G03.09on Radiometry.Current edition approved Oct. 1, 2005. Published November 2005. Originallyapproved in 2000. Last previous edition approved in 2000 as G 167 00.2For referenced
15、 ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Cons
16、hohocken, PA 19428-2959, United States.and Methods of Observation, fifth ed., WMO-No. 8,Geneva32.3 ISO Standards:ISO 9060:1990 Solar EnergySpecification and Classifica-tion of Instruments for Measuring Hemispherical Solarand Direct Solar Radiation3ISO 9846:1993 Solar EnergyCalibration of a Pyranom-e
17、ter Using a Pyrheliometer33. Terminology3.1 Definitions:3.1.1 See Terminology E 772.3.2 Definitions of Terms Specific to This Standard:3.2.1 altazimuth mount, na tracking mount capable ofrotation about orthogonal altitude and azimuth axes; trackingmay be manual or by a follow-the-sun servomechanism.
18、3.2.2 calibration of a radiometer, vdetermination of theresponsivity (or the calibration factor, the reciprocal of theresponsivity) of a radiometer under well-defined measurementconditions.3.2.3 direct solar radiation, nthat component of solarradiation within a specified solid angle (usually 5.0 or
19、5.7)subtended at the observer by the suns solar disk, including aportion of the circumsolar radiation.3.2.4 diffuse solar radiation, nthat component of solarradiation scattered by the air molecules, aerosol particles, cloudand other particles in the hemisphere defined by the sky dome.3.2.5 equatoria
20、l mount, nsee Terminology E 772.3.2.6 field of view angle of a pyrheliometer, nfull angle ofthe cone which is defined by the center of the receiver surface(see ISO 9060, 5.1) and the border of the limiting aperture, ifthe latter are circular and concentric to the receiver surface; ifnot, effective a
21、ngles may be calculated (1, 2).43.2.7 global solar radiation, ncombined direct and dif-fuse solar radiation falling on a horizontal surface; solarradiation incident on a horizontal surface from the hemispheri-cal sky dome, or from 2p Steradian (Sr).3.2.8 hemispherical radiation, ncombined direct and
22、 dif-fuse solar radiation incident from a virtual hemisphere, or from2p Sr, on any inclined surface.3.2.8.1 DiscussionThe case of a horizontal surface isdenoted global solar radiation (3.2.7).3.2.9 pyranometer, nsee Terminology E 772.3.2.10 pyranometer, field, na pyranometer meeting WMOSecond Class
23、or better (that is, First Class) appropriate to fielduse and typically exposed continuously.3.2.11 pyranometer, reference, na pyranometer (see alsoISO 9060), used as a reference to calibrate other pyranometers,which is well-maintained and carefully selected to possessrelatively high stability and ha
24、s been calibrated using apyrheliometer.3.2.12 pyrheliometer, nsee Terminology E 772 and ISO9060.3.2.13 pyrheliometer, absolute (self-calibrating), na solarradiometer with a limited field of view configuration. The fieldof view should be approximately 5.0 and have a slope angle offrom 0.75 to 0.8, wi
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