ASTM E971-1988(2003) Standard Practice for Calculation of Photometric Transmittance and Reflectance of Materials to Solar Radiation《材料对太阳能辐射的光度透射比及反射比计算的标准实施规程》.pdf
《ASTM E971-1988(2003) Standard Practice for Calculation of Photometric Transmittance and Reflectance of Materials to Solar Radiation《材料对太阳能辐射的光度透射比及反射比计算的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E971-1988(2003) Standard Practice for Calculation of Photometric Transmittance and Reflectance of Materials to Solar Radiation《材料对太阳能辐射的光度透射比及反射比计算的标准实施规程》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 971 88 (Reapproved 2003)Standard Practice forCalculation of Photometric Transmittance and Reflectanceof Materials to Solar Radiation1This standard is issued under the fixed designation E 971; the number immediately following the designation indicates the year oforiginal adoption or, i
2、n the case of revision, 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 practice describes the calculation of luminous(photometric) transmittance an
3、d reflectance of materials fromspectral radiant transmittance and reflectance data obtainedfrom Test Method E 903.1.2 Determination of luminous transmittance by this prac-tice is preferred over measurement of photometric transmit-tance by methods using the sun as a source and a photometeras detector
4、 except for transmitting sheet materials that areinhomogeneous, patterned, or corrugated.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 safety and health practice
5、s and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:E 772 Terminology Relating to Solar Energy Conversion2E 891 Tables for Terrestrial Direct Normal Solar SpectralIrradiance for Air Mass 1.53E 903 Test Method for Solar Absorptance, Refl
6、ectance, andTransmittance of Materials Using Integrating Spheres2E 972 Test Method for Solar Photometric Transmittance ofSheet Materials Using Sunlight2E 1175 Test Method for Determining Solar or PhotopicReflectance, Transmittance, and Absorptance of MaterialsUsing a Large Diameter Integrating Spher
7、e22.2 CIE Standard:Standard Illuminator D6543. Terminology3.1 DefinitionsFor definitions of other terms used in thispractice, refer to Terminology E 772.3.1.1 illuminance, nluminous irradiance.3.1.2 luminous (photometric), adjreferring to a radiomet-ric quantity, indicates the weighted average of th
8、e spectralradiometric quantity, with the photopic spectral luminousefficiency function given in Annex A1 being the weightingfunction (see Appendix X1).3.1.3 radiant flux, F = dQ/dt Watt(W), npower emitted,transferred, or received in the form of electromagnetic wavesor photons. See radiometric proper
9、ties and quantities.3.1.4 solar irradiance at a point of a surface, Es=dF/dA,nthe quotient of the solar flux incident on an element of asurface containing the point, by the area of that element,measured in watts per square metre.3.1.5 solar, adj(1) referring to a radiometric term, indi-cates that th
10、e quantity has the sun as a source or is character-istic of the sun. (2) referring to an optical property, indicatesthe weighted average of the spectral optical property, with thesolar spectral irradiance Eslused as the weighting function.3.1.6 spectral, adj(1) for dimensionless optical proper-ties,
11、 indicates that the property was evaluated at a specificwavelength, l, within a small wavelength interval, Dl about l.Symbol wavelength in parentheses, as L (350 nm, 3500), oras a function of wavelength, symbol L (l). (2) for a radiomet-ric quantity, indicates the concentration of the quantity per u
12、nitwavelength or frequency, indicated by the subscript lambda, asLl= dL/dl, at a specific wavelength. The wavelength at whichthe spectral concentration is evaluated may be indicated by thewavelength in parentheses following the symbol, Ll(350 nm).4. Summary of Practice4.1 Spectral transmittance or r
13、eflectance data betweenwavelengths of 380 and 760 nm (3800 to 7600 ), which havebeen obtained in accordance with Test Method E 903, aremultiplied by solar spectral irradiance values provided inStandard Tables E891 and by the photopic spectral luminousefficiency function (see Annex A1). The resulting
14、 product isintegrated over the spectral range from 380 to 760 nm using asummation procedure to approximate the integral. This sum-mation procedure is then repeated with the product of the solarenergy spectral distribution and the photopic spectral luminousefficiency. The ratio of the two integrals i
15、s the solar luminous(photometric) transmittance or reflectance of the measuredsample.1These test methods are under the jurisdiction of ASTM Committee E44 onSolar, Geothermal, and Other Alternative Energy Sources and is the directresponsibility of Subcommittee E44.05 on Solar Heating and Cooling Subs
16、ystemsand Systems.Current edition approved Aug. 26, 1988. Published December 1988. Originallyapproved in 1983. Last previous edition approved in 1996 as E 971 85(1996)e1.2Annual Book of ASTM Standards, Vol 12.02.3Annual Book of ASTM Standards, Vol 14.02.4Available from Commission Internationale de l
17、Eclairage, Bureau Central de laCIE, 4 Av. du Recteur Poincar, 75-Paris, France.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.5. Significance and Use5.1 Glazed apertures in buildings are commonly utilized forthe controlled admission
18、 of both light and solar radiant heatenergy into the structure. Other devices may also be used toreflect light and solar radiant heat into a building.5.1.1 Most of the solar radiant energy entering a building inthis manner possesses wavelengths that lie between 300 and2500 nm (3000 to 25 000 ). Only
19、 the portion between 380and 760 nm is visible radiation, however. In daylightingapplications, it is therefore important to distinguish the solarradiant energy transmittance and reflectance of these materialsfrom their luminous (visual or photometric) transmittance andreflectance.5.2 For comparisons
20、of the energy and illumination perfor-mances of building fenestration systems it is important that thecalculation or measurement, or both, of solar radiant andluminous transmittance and reflectance of materials used infenestration systems use the same incident solar spectralirradiance distribution.5
21、.2.1 Solar luminous transmittance and reflectance are im-portant properties in describing the performance of compo-nents of solar illumination systems (for example, windows,clerestories, skylights, shading and reflecting devices) andother fenestrations that permit the passage of daylight as wellas s
22、olar energy into buildings.5.3 This practice is useful for determining the luminoustransmittance and reflectance of glazing materials and diffuselyor quasi-diffusely reflecting materials used in daylightingsystems. For the results of this practice to be meaningful,inhomogeneities or corrugations in
23、the sample must not belarge. Test Method E 1175 (or Test Method E 972) is availablefor sheet materials that do not satisfy this criterion.6. Procedure6.1 MeasurementsMeasure spectral transmittance datat(li) or spectral reflectance data r(li) from 380 nm to 760 nmas described in Test Method E 903.6.2
24、 CalculationsCalculate the photometric transmittancetvor reflectance rvusing Eq 1 as follows:rvor tv5 (i 5 1Nrli! or t li!#EliVliDli/(i 5 1NEliVli! (1)where:Eli= terrestrial direct normal solar spectral irradiance forair mass 1.5 provided in Tables E891,Vl= photopic spectral luminous efficiency func
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