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ASHRAE Standard 90.1 Metal Building U-Factors-Part 2: A Systems Based Approach for Predicting the Thermal Performance of Single Layer Fiberglass Batt Insulation Assemblies

机译:ASHRAE标准90.1金属建筑U型零件-第2部分:一种基于系统的方法来预测单层玻璃纤维毡绝缘组件的热性能

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摘要

The paper represents the second part of a comprehensive study on modeling heat transfer in metal building roof insulation assemblies containing fiberglass insulation. Part 1 described the development and experimental validation of a comprehensive three-dimensional mathematical model for heat transfer (and airflow where applicable) in metal building roof insulation assemblies. The model was used to calculate U-factors for several standing seam roof(SSR) and through-fastened roof (TFR) assemblies assuming the insulation drapes between the purlins to be parabolic. The second part of the work used the results from the model described in part 1 to develop a relatively simple approach to predict the overall heat transfer coefficient (U-factor) of insulated metal building roof insulation assemblies. It is shown that the U-factors obtained using the numerical model may be correlated, to a fairly high degree (R~2 = 0.998), to an overall or system thermal resistance parameter, R_(insul-sys) as shown below.rn1/U= 0.8672 R_(insul-sys)+ 1.132rnIn the above equation, U is in Btu/ft~2·h·℉ and R is in ft~2·h·℉/Btu. 1 Btu/ft~2·h·℉ = 5.6782 W/m~2·K and 1 ft~2·h·℉/Btu = 0.17611 m~2·K/W.rnThe parameter R_(insul-sys) is calculated by combining three thermal resistances operating in parallel. Two of these resistances of equal value correspond to the insulation drapes on either side of the purlin and the one in the middle represents the thermal resistance of insulation over the purlin. An analytical expression for the R-value of the parabolic insulation drape is derived. The approach developed in this paper greatly enhances our ability to predict U-factors for metal building roof assemblies.
机译:本文代表了对包含玻璃纤维隔热材料的金属建筑物屋顶隔热组件中的传热建模进行全面研究的第二部分。第1部分描述了用于金属建筑屋顶隔热组件的热传递(和气流,适用时)的综合三维数学模型的开发和实验验证。该模型用于计算几个直立煤层屋顶(SSR)和直通屋顶(TFR)组件的U因子,假定assuming条之间的绝缘垂线是抛物线形的。工作的第二部分使用第1部分中描述的模型的结果来开发一种相对简单的方法来预测隔热金属建筑​​屋顶隔热组件的整体传热系数(U因子)。结果表明,使用数值模型获得的U因子可能在相当高的程度上(R〜2 = 0.998)与总体或系统热阻参数R_(insul-sys)相关,如下所示。 / U = 0.8672 R_(insul-sys)+ 1.132rn在上式中,U以Btu / ft〜2·h·℉为单位,R以ft〜2·h·℉/ Btu为单位。 1 Btu / ft〜2·h·℉= 5.6782 W / m〜2·K和1 ft〜2·h·℉/ Btu = 0.17611 m〜2·K / W.rn计算参数R_(insul-sys)通过组合三个并联运行的热阻。这些值相等的电阻中的两个对应于the条两侧的绝缘垂角,而中间的电阻代表represents条上的绝缘热阻。推导了抛物线绝缘披覆的R值的解析表达式。本文开发的方法大大增强了我们预测金属建筑物屋顶组件的U因子的能力。

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  • 来源
    《ASHRAE Transactions》 |2010年第1期|P.169-176|共8页
  • 作者单位

    Owens Corning Science & Technology Center, Granville, OH;

    rnOwens Corning World Headquarters in Toledo, OH;

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