ASTM E1084-1986(2015) 7566 Standard Test Method for Solar Transmittance (Terrestrial) of Sheet Materials Using Sunlight《利用太阳光的薄板太阳能传递性 (地面上) 的标准试验方法》.pdf
《ASTM E1084-1986(2015) 7566 Standard Test Method for Solar Transmittance (Terrestrial) of Sheet Materials Using Sunlight《利用太阳光的薄板太阳能传递性 (地面上) 的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1084-1986(2015) 7566 Standard Test Method for Solar Transmittance (Terrestrial) of Sheet Materials Using Sunlight《利用太阳光的薄板太阳能传递性 (地面上) 的标准试验方法》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E1084 86 (Reapproved 2015)Standard Test Method forSolar Transmittance (Terrestrial) of Sheet Materials UsingSunlight1This standard is issued under the fixed designation E1084; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revi
2、sion, the year of 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 measurement of solartransmittance (terrestrial) of materials in sheet fo
3、rm by using apyranometer, an enclosure, and the sun as the energy source.1.2 This test method also allows measurement of solartransmittance at angles other than normal incidence.1.3 This test method is applicable to sheet materials that aretransparent, translucent, textured, or patterned.1.4 This st
4、andard 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. Terminology2.1 Definiti
5、ons:2.1.1 pyranometer, na radiometer used to measure thetotal solar radiant energy incident upon a surface per unit timeper unit area. This energy includes the direct radiant energy,diffuse radiant energy, and reflected radiant energy from thebackground.2.1.2 solar reflectance, nthe ratio of reflect
6、ed to incidentsolar flux.2.1.3 solar transmittance, nthe ratio of transmitted toincident solar flux.2.2 Definitions of Terms Specific to This Standard:2.2.1 solar flux, nthe total radiation from the sun, bothdirect and diffuse.3. Summary of Test Method3.1 Using a pyranometer to measure the solar irr
7、adiance, thetest specimen is inserted in the path of the rays from the sun tothe pyranometer. An enclosure with a nonreflecting bottom isused to avoid measuring flux from around the edges of thespecimen or from multiple reflections between the box and thespecimen. The transmittance is the ratio of t
8、he flux measuredwith the specimen in the light path to the flux measured withoutthe specimen in the path.4. Significance and Use4.1 Solar transmittance is an important factor in the admis-sion of energy through fenestration, collector glazing, andprotective envelopes. This test method provides a mea
9、ns ofmeasuring this factor under fixed conditions. While the datamay be of assistance to designers in the selection and specifi-cation of glazing materials, the solar transmittance is notsufficient to define the rate of net heat transfer withoutinformation on other important factors.4.2 This test me
10、thod has been found practical for bothtransparent and translucent materials, as well as for those withtransmittance reduced by highly reflective coatings. This testmethod is particularly applicable to the measurement oftransmittance of inhomogeneous, fiber reinforced, patterned, orcorrugated materia
11、ls since the transmittance is averaged over alarge area.4.3 This test method may be used to measure transmittanceof glazing materials at angles up to 60 off normal incidence.NOTE 1A technique similar to the one described but using apyrheliometer has been used for the measurement of specular solarref
12、lectance; however, there is insufficient experience with this techniquefor standardization at present.5. Apparatus5.1 EnclosureThe required apparatus is a box capable ofsupporting a 0.60 m (24 in.) square specimen. The box shallhave a square, clear aperture of no less than 0.50 m by 0.50 m(20 in. by
13、 20 in.). The enclosure shall have provisions to holdspecimens planar across the aperture with the additionalcapability to remove and replace the specimen easily during themeasurement process. It shall also have the capability to movethe specimen across the aperture in a systematic way. Lightbaffled
14、 air vents at the top and bottom of the enclosure arerecommended to aid cooling of all components when aspecimen is in place.The inside of the box shall have side wallscovered with mirrors having specular, solar reflectance greaterthan 0.85 that extend from the opening down to the plane of the1This
15、test method is under the jurisdiction of ASTM Committee E44 on Solar,Geothermal and OtherAlternative Energy Sources and is the direct responsibility ofSubcommittee E44.05 on Solar Heating and Cooling Systems and Materials.Current edition approved March 1, 2015. Published April 2015. Originallyapprov
16、ed in 1986. Last previous edition approved in 2009 as E108486(2009). DOI:10.1520/E1084-86R15.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1sensor element. The rest of the inside of the box shall beblackened so that its solar reflect
17、ance is less than 0.10. Atypical unit is shown in Fig. 1.NOTE 2Mirrors having the necessary specular reflectance are brightanodized aluminum lighting sheet, aluminized polymer films, and con-ventionally mirrored glass. For highly diffusing materials, a box with thespecified aperture and blackened si
18、de walls, the test method couldunderestimate the transmittance by up to 0.03. Using highly reflecting sidewalls on the interior of the enclosure reduces this error for such materialsto less than 0.01 transmittance unit. For highly specular materials, thiserror is negligible.NOTE 3For an enclosure wi
19、th a highly reflecting bottom, themeasured transmittance could be greater than 0.05 too high due tomultiple reflections. A blackened bottom having less than 0.10 reflectancewill hold this error to less than 0.005 transmittance units.22Flat black paints are satisfactory for this purpose.Also, a linin
20、g of opaque blackvelvet cloth such as that available from photographic suppliers is suitable.(A) Specular mirror, 500 50 mm. (J) Standard 2 4 in. wood framing, 75 mm long (bottom to center of hole)(B) Nonreflecting, black bottom. Nontransmitting louvers or multiple layers of grillcloth that allow ai
21、r circulation into the enclosure are preferable.(K) Rectangular,34 in. plywood, 500 75 mm.(C) Pyranometer (L)12 2 in. carriage bolt with wing and washer.(D) Support shelf for pyranometer. The height of the shelf will depend on thepyranometer used.(M)34 in. iron pipe.(E) Semicircular disk 538 mm diam
22、eter out of34 in plywood. (N) U-bolts.(F) Semicircular tracker with scale (P) Primary tracking axis, aligned parallel to earths axis of rotation. The axis shallmake an angle with the vertical equal to the local latitude and point toward theNorth Star.(G) Lip of flange turned up to 20 mm to help supp
23、ort specimens (Q) C-clamp attached to arm to lock equatorial angle during measurements.(H) 50 mm flange bent out of sheet metal or cut from wood. Top surface ispainted back to prevent light entering enclosure due to multiple reflections fromaround the specimen edges.(R) Vertical support post approxi
24、mately1mlong. Made from standard 2 6 ftlumber.NOTE 1This apparatus consisting of enclosure, detector, and equatorial mount has been found acceptable for measuring solar transmittance of sheetmaterials. The majority of the pieces are cut from standard 2.4, 2 by 6, and34 in. plywood construction mater
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