Practical correlation for thermal resistance of low-sloped enclosed airspaces with downward heat flow for building applications

H. Saber
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引用次数: 9

Abstract

The 2009 ASHRAE Handbook—Fundamentals (Chapter 26) provided a table that contains the thermal resistances (R-values) of vertical, horizontal, and high-sloped (45°) enclosed airspaces. This table is extensively used by modelers, architects, and building designers in the design for the R-values of building enclosures. The effect of the airspace aspect ratio and the inclination angle (θ) of 30° on the R-values are not accounted for in the ASHRAE table. However, previous studies showed that the aspect ratio of the airspace can affect its R-value. In this article, the previous studies that focused on determining the R-values for vertical, horizontal, and high-sloped enclosed airspaces are extended to investigate the effect of the aspect ratio on the R-values of low-sloped (θ = 30°) enclosed airspaces under downward heat flow for different airspace thicknesses and having a wide range of values for the effective emittance, mean temperature, and temperature differences across the airspaces. Thereafter, practical correlation is developed for determining the R-values of low-sloped enclosed airspaces for future use by modelers, architects, and building designers.
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低倾斜封闭空气空间的热阻与建筑应用中向下热流的实际关联
2009年ASHRAE手册基础(第26章)提供了一个表格,其中包含垂直、水平和高倾斜(45°)封闭空气空间的热阻(r值)。此表被建模者、建筑师和建筑设计师广泛用于建筑外壳的r值设计。ASHRAE表未考虑空域宽高比和30°倾角(θ)对r值的影响。然而,以往的研究表明,空域的宽高比会影响其r值。在本文中,将以往的研究重点扩展到确定垂直、水平和高斜度封闭空气空间的r值,研究宽高比对低斜度(θ = 30°)封闭空气空间在不同空域厚度下的向下热流下r值的影响,这些封闭空气空间的有效发射度、平均温度和温差的取值范围很广。此后,实际相关性发展为确定低倾斜封闭空气空间的r值,供建模者、建筑师和建筑设计师将来使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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HVAC&R Research
HVAC&R Research 工程技术-工程:机械
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