ASTM E881-1992(2003) Standard Practice for Exposure of Solar Collector Cover Materials to Natural Weathering Under Conditions Simulating Stagnation Mode《在模拟滞留模式下暴露于自然气候下的太阳能收集器挡盖材料.pdf
《ASTM E881-1992(2003) Standard Practice for Exposure of Solar Collector Cover Materials to Natural Weathering Under Conditions Simulating Stagnation Mode《在模拟滞留模式下暴露于自然气候下的太阳能收集器挡盖材料.pdf》由会员分享,可在线阅读,更多相关《ASTM E881-1992(2003) Standard Practice for Exposure of Solar Collector Cover Materials to Natural Weathering Under Conditions Simulating Stagnation Mode《在模拟滞留模式下暴露于自然气候下的太阳能收集器挡盖材料.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 881 92 (Reapproved 2003)Standard Practice forExposure of Solar Collector Cover Materials to NaturalWeathering Under Conditions Simulating Stagnation Mode1This standard is issued under the fixed designation E 881; the number immediately following the designation indicates the year ofor
2、iginal adoption or, in 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 covers a procedure for the exposure ofsolar co
3、llector cover materials to the natural weather environ-ment at elevated temperatures that approximate stagnationconditions in solar collectors having a combined back and edgeloss coefficient of less than 1.5 W/(m2 C).1.2 This practice is suitable for exposure of both glass andplastic solar collector
4、 cover materials. Provisions are made forexposure of single and double cover assemblies to accommo-date the need for exposure of both inner and outer solarcollector cover materials.1.3 This practice does not apply to cover materials forevacuated collectors, photovoltaic cells, flat-plate collectorsh
5、aving a combined back and edge loss coefficient greater than1.5 W/(m2 C), or flat-plate collectors whose design incorpo-rates means for limiting temperatures during stagnation.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsib
6、ility 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 Documents2.1 ASTM Standards:D 1435 Practice for Outdoor Weathering of Plastics2E 765 Practice for Evaluation of Cover Materia
7、ls for FlatPlate Solar Collectors3E 772 Terminology Relating to Solar Energy Conversion3E 782 Practice for Exposure of Cover Materials for SolarCollectors to Natural Weathering Under Conditions Simu-lating Operational Mode3G 7 Practice for Atmospheric Environmental ExposureTesting of Nonmetallic Mat
8、erials42.2 Other Documents:Federal Specification HH-I-558B, Amendment 3, InsulationBlocks, Boards, Felts, Sleeving (Pipe and Tube Covering),and Pipe Fitting Covering Thermal (Mineral Fiber, Indus-trial Type) August 197653. Terminology3.1 DefinitionsFor definitions of terms used in thispractice, refe
9、r to Terminology E 772.4. Significance and Use4.1 This practice describes a weathering box test fixture andestablishes limits for the heat loss coefficients. Uniform expo-sure guidelines are provided to minimize the variables encoun-tered during outdoor exposure testing.4.2 Since the combination of
10、elevated temperature and solarradiation may cause some solar collector cover materials todegrade more rapidly than either exposure alone, a weatheringbox that elevates the temperature of the cover materials is used.4.3 This practice may be used to assist in the evaluation ofsolar collector cover mat
11、erials in the stagnation mode. Nosingle temperature or procedure can duplicate the range oftemperatures and environmental conditions to which covermaterials may be exposed during stagnation conditions. Toassist in evaluation of solar collector cover materials in theoperational mode, Practice E 782 s
12、hould be used. Insufficientdata exist to obtain exact correlation between the behavior ofmaterials exposed in accordance with this practice and actualin-service performance.4.4 This practice may also be useful in comparing theperformance of different materials at one site or the perfor-mance of the
13、same material at different sites, or both.4.5 Means of evaluating the effects of weathering areprovided in Practice E 765, and in other ASTM test methodsthat evaluate material properties.4.6 Exposures of the type described in this practice may beused to evaluate the stability of solar collector cove
14、r materialswhen exposed outdoors to the varied influences that compriseweather. Exposure conditions are complex and changeable.Important factors are material temperature, climate, time ofyear, presence of industrial pollution, etc. Generally, because it1These test methods are under the jurisdiction
15、of ASTM Committee E44 onSolar, Geothermal, and Other Alternative Energy Sources and is the directresponsibility of Subcommittee E44.05 on Solar Heating and Cooling Subsystemsand Systems.Current edition approved Sept. 15, 1992. Published March 1993. Originallyapproved in 1982. Last previous edition a
16、pproved in 1996 as E 881 - 92 (1996).2Annual Book of ASTM Standards, Vol 08.01.3Annual Book of ASTM Standards, Vol 12.02.4Annual Book of ASTM Standards, Vol 14.02.5Available from the General Services Administration (3 FRI), Building 197,Navy Yard Annex, Washington, DC 20407.1Copyright ASTM Internati
17、onal, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.is difficult to define or measure precisely the factors influencingdegradation due to weathering, results of outdoor exposuretests must be taken as indicative only. Repeated exposuretesting at different seasons
18、 over a period of more than one yearis required to confirm exposure tests at any one location.Control samples must always be used in weathering tests forcomparative analysis.5. Weathering Box Test Fixture5.1 Test Fixture Requirements:5.1.1 The weathering box test fixture shall be constructedsuch tha
19、t the combined back and edge loss coefficient is lessthan 1.5 W/(m2 C) (0.264 Btu/(ft2 h F) (Note 1). (Themethod for determining this coefficient is outlined in AppendixX1 of this practice.) The distance between the absorber and theclosest cover plate shall be between 13 and 38 mm (0.5 and 1.5in.).
20、For a double-cover exposure the separation between theinner and outer cover shall be between 13 and 38 mm (0.5 and1.5 in.). Not more than 10 % of the absorber plate area shall beshaded when the sun is at a 30 angle with the plane of the frontsurface of the exposure box.NOTE 1A good flat-plate solar
21、collector has a combined back andedge loss coefficient of less than about 1.5 W/(m2 C) (0.264 Btu/(ft2hF).5.1.2 Boxes that meet the requirements of 5.1.1 are de-scribed in Table 1. Fig. 1 and Fig. 2 illustrate the weatheringbox test fixtures. Although Fig. 1 shows a square box, anyshape is permitted
22、 if the requirements in 5.1.1 are met.Appendix X1 of this practice describes the method for deter-mining the combined back and edge loss coefficient.5.2 Contents of the Weathering Box Test Fixture: (1) a box,( 2) insulation, (3) absorber, ( 4) box top, (5) spacer, ( 6)glazing frame, and (7) adhesive
23、 tapes.5.2.1 The box may have any dimensions and be made of anymaterial as long as the requirements in 5.1.1 are met. A weephole shall be drilled at the lower end of the bottom of the boxto provide drainage and to minimize moisture accumulation.NOTE 2It is desirable that the box and box top be made
24、of a materialthat will be unaffected by the exposure environment. A metal resistant tocorrosion encountered in the environment would be suitable. If wood isused, it should be painted or treated on the exterior to make it resistant tomoisture. In certain climates only rot-resistant wood should be use
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