
【国外标准】 Standard Practice for Estimation of Heat Gain or Loss Through Ceilings Under Attics Containing Radiant Barriers by Use of a Computer Program
本网站 发布时间:
2024-02-28
开通会员免费在线看70000余条国内标准,赠送文本下载次数,单本最低仅合13.3元!还可享标准出版进度查询、定制跟踪推送、标准查新等超多特权!  
查看详情>>

适用范围:
5.1 Manufacturers of radiant barriers express the performance of their products in terms of the total hemispherical emittance. The purpose of a radiant barrier is to decrease the radiation heat transfer across the attic air space, and hence, to decrease the heat loss or gain through the ceiling below the attic. The amount of decrease in heat flow will depend upon a number of factors, such as weather conditions, amount of mass or reflective insulation in the attic, solar absorptance of the roof, geometry of the attic and roof, and amount and type of attic ventilation. Because of the infinite combinations of these factors, it is not practical to publish data for each possible case.5.2 The calculation of heat loss or gain of a system containing radiant barriers is mathematically complex, and because of the iterative nature of the method, it is best handled by computers.5.3 Computers are now widely available to most producers and consumers of radiant barriers to permit the use of this practice.5.4 The user of this practice may wish to modify the data input to represent accurately the structure. The computer program also may be modified to meet individual needs. Also, additional calculations may be desired, for example, to sum the hourly heat flows in some fashion to obtain estimates of seasonal or annual energy usages. This might be done using the hourly data as inputs to a whole-house model, and by choosing house balance points to use as cutoff points in the summations.1.1 This practice covers the estimation of heat gain or loss through ceilings under attics containing radiant barriers by use of a computer program. The computer program included as an adjunct to this practice provides a calculational procedure for estimating the heat loss or gain through the ceiling under an attic containing a truss or rafter mounted radiant barrier. The program also is applicable to the estimation of heat loss or gain through ceilings under an attic without a radiant barrier. This procedure utilizes hour-by-hour weather data to estimate the hour-by-hour ceiling heat flows. The interior of the house below the ceiling is assumed to be maintained at a constant temperature. At present, the procedure is applicable to sloped-roof attics with rectangular floor plans having an unshaded gabled roof and a horizontal ceiling. It is not applicable to structures with flat roofs, vaulted ceilings, or cathedral ceilings. The calculational accuracy also is limited by the quality of physical property data for the construction materials, principally the insulation and the radiant barrier, and by the quality of the weather data.1.2 Under some circumstances, interactions between radiant barriers and HVAC ducts in attics can have a significant effect on the thermal performance of a building. Ducts are included in an extension of the computer model given in the appendix.1.3 The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in each system may not be exact equivalents; therefore, each system shall be used independently of the other. Combining values from the two systems may result in non-conformance with the standard.1.4 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
标准号:
ASTM C1340/C1340M-10(2021)
标准名称:
Standard Practice for Estimation of Heat Gain or Loss Through Ceilings Under Attics Containing Radiant Barriers by Use of a Computer Program
英文名称:
Standard Practice for Estimation of Heat Gain or Loss Through Ceilings Under Attics Containing Radiant Barriers by Use of a Computer Program标准状态:
Active-
发布日期:
-
实施日期:
出版语种:
- 推荐标准
- AS 5013.10-2004/Amdt 1-2005 Food microbiology Microbiology of food and animal feeding stuffs - Horizontal method for the detection of Salmonella spp.
- AS ISO 10993.10-2002 Biological evaluation of medical devices Tests for irritation and sensitization
- AS/NZS 1580.481.1.10:1998 (R2013) Paints and related materials - Methods of test Coatings - Exposed to weathering - Degree of flaking and peeling
- AS/NZS 2098.10:1995 Methods of test for veneer and plywood Measurement of dimensions and shape for structural Laminated Veneer Lumber
- AS/NZS 3350.2.10:1996/Amdt 2:2001 Safety of household and similar electrical appliances Particular requirements - Floor treatment machines and wet scrubbing machines
- AS/NZS 3350.2.10:1996/Amdt 3:2007 Safety of household and similar electrical appliances Particular requirements - Floor treatment machines and wet scrubbing machines (IEC 60335-2-10:1992, MOD)
- AS/NZS 3580.9.10:2006 Methods for sampling and analysis of ambient air Determination of suspended particulate matter - PM2.5 low volume sampler - Gravimetric method
- AS/NZS 4266.10:1995 Reconstituted wood-based panels - Methods of test Determination of glue bond durability (boil test)
- AS/NZS 4266.10:1995/Amdt 1:1997 Reconstituted wood-based panels - Methods of test - Determination of glue bond durability (boil test)
- AS/NZS 4695.10.2:1997 Fire hazard testing of electrotechnical products Guidance and test methods for the minimization of the effects of abnormal heat on electrotechnical products involved in fires - Method for testing products made from non-metallic materials for resistance to heat using the ball pressure test
- AS/NZS 4695.2.10:1996 Fire hazard testing of electrotechnical products Test methods - Glow-wire test methods - General
- AS/NZS 60079.10.1:2009/Amdt 1:2013 Explosive atmospheres Classification of areas - Explosive gas atmospheres (IEC 60079-10-1, Ed.1.0(2008) MOD)
- ASTM E2264-23 Standard Practice for Determining the Effects of Temperature Cycling on Fenestration Products
- ASTM E2268-04(2023) Standard Test Method for Water Penetration of Exterior Windows, Skylights, and Doors by Rapid Pulsed Air Pressure Difference
- ASTM E2269-21 Standard Test Method for Determining Argon Concentration in Sealed Insulating Glass Units using Gas Chromatography