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U-value in situ measurement for energy diagnosis of existing buildings

机译:U值现场测量可用于现有建筑物的能源诊断

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摘要

Energy audits and check of energy performances are more and more urgent for achieving energy saving in existing buildings. In this context, it is very important to estimate U-value of buildings and, to this aim, different approaches are available. U-value is mainly estimated from the knowledge of thermal properties of the single layers of the wall using design data or analogies with similar buildings. To get a more accurate estimation, field analyses should be made like endoscopic investigation or logs. Nowadays, also in situ measurement of U-value using heat flow meters are available. Such measurements involve quite simple operational and calculation issues but, on the other hand, the disadvantage of long duration times and not negligible measurement uncertainties. In this paper, the authors present the results of an experimental campaign aimed both to assess the metrological performance of HFMs and to evaluate the influence of the ambient conditions. Furthermore, in situ U-values have been compared with the estimated ones from design data and field analyses. The results of the test show a good behavior of HFMs when tests are conducted according to ISO 9869. Nevertheless, operative measurement conditions and characteristics of the envelope component under investigation can strongly affect in situ U-value accuracy. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了实现现有建筑物的节能,能源审计和能源性能检查越来越迫切。在这种情况下,估计建筑物的U值非常重要,为此,可以使用不同的方法。 U值主要是使用设计数据或类似建筑物的类比,根据墙体单层的热性能知识估算的。为了获得更准确的估计,应进行内窥镜检查或测井等现场分析。如今,还可以使用热流量计在原位测量U值。这样的测量涉及非常简单的操作和计算问题,但是另一方面,缺点是持续时间长且测量不确定性不能忽略。在本文中,作者介绍了一项旨在评估HFM的计量性能并评估环境条件影响的实验活动的结果。此外,已将原位U值与设计数据和现场分析得出的估计值进行了比较。测试结果表明,按照ISO 9869进行测试时,HFM具有良好的性能。尽管如此,所研究的包络部件的有效测量条件和特性会严重影响原位U值的准确性。 (C)2015 Elsevier B.V.保留所有权利。

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