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Estimation of building component UA and gA from outdoor tests in warm and moderate weather conditions

机译:在温暖和中等天气条件下通过室外测试估算建筑构件UA和gA

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Accurate knowledge of the thermal properties of building components is necessary to implement adequate energy saving strategies in buildings. Outdoor experiments using test cells are very useful tools for realistic estimation of these properties. This paper describes the analyses performed, and the procedure followed in identifying and solving some problems found when building components are tested for UA and gA in a test cell under warm and moderate weather conditions. A window component was tested in a PASLINK test cell at the CIEMAT's 'Plataforma Solar de Almeria (PSA-CIEMAT)' in Tabernas (Almeria, Spain) and several data sets recorded under quite different weather and test conditions were analysed. First the problems identified when applying the usual test and linear analysis procedures are described. Then hypotheses about the cause of these problems are formulated. Afterwards, strategies followed for testing these hypotheses are described. Once the cause of the problems had been identified, they were fine tuned to find a model for accurate UA and gA estimation. This study demonstrated that nonlinear models, in which long wave radiation is considered as nonlinear effect, yield remarkably better performance than the commonly used linear models, for estimating the component UA and gA values.
机译:要在建筑物中实施适当的节能策略,必须准确了解建筑物组件的热特性。使用测试单元的户外实验是非常实用的工具,可用于实际评估这些属性。本文介绍了进行的分析,以及识别和解决在温暖和中等天气条件下在测试室内对建筑构件进行UA和gA测试时发现的一些问题的过程。在位于西班牙塔贝纳斯(西班牙阿尔梅里亚)的CIEMAT的“阿尔梅里亚太阳城(PSA-CIEMAT)”的PASLINK测试室中对窗户组件进行了测试,并分析了在非常不同的天气和测试条件下记录的几个数据集。首先描述了在应用常规测试和线性分析程序时发现的问题。然后提出关于这些问题原因的假设。然后,描述了用于检验这些假设的策略。一旦确定了问题的原因,就可以对其进行微调,以找到用于准确UA和gA估算的模型。这项研究表明,将长波辐射视为非线性效应的非线性模型在估计分量UA和gA值方面比通常使用的线性模型表现出明显更好的性能。

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