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A response factor-based method for the rapid in-situ determination of wall's thermal resistance in existing buildings

机译:基于响应因子的现有建筑中墙体热阻的快速快速确定方法

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The in-situ estimation of the thermal resistance (Rc-value) of walls in buildings is of major significance to determine their energy performance. The exact construction of walls is generally unknown, especially in older buildings, making the estimation of the Rc-value inaccurate. In-situ measurement is generally not being performed because, for the current standard method (ISO 9869), generally a measurement period of more than ten days is required. In the present paper, a new transient in-situ measurement method (Excitation Pulse Method, EPM) based on the theory of response factors is derived, applied experimentally on three walls, showing that it is possible to measure the Rc-value within less than 2 h. The results are compared to the ones obtained by ISO 9869 method, showing a good agreement. Additionnally, EPM measurement technique can provide the average Volumetric Heat Capacity and thermal conductivity. It is also shown that the ISO 9869 method can be easily improved by using an additional heat flux meter. EPM is believed to make a significant contribution to the quick and accurate estimation of the thermal resistance in unknown constructions and therefore to the accuracy of the prediction of energy consumption in buildings. (C) 2016 Elsevier B.V. All rights reserved.
机译:对建筑物墙壁的热阻(Rc值)进行现场估算对于确定其能量性能具有重要意义。墙壁的确切构造通常是未知的,尤其是在较老的建筑物中,这使得Rc值的估算不准确。通常不执行原位测量,因为对于当前的标准方法(ISO 9869),通常需要超过10天的测量时间。本文基于响应因子理论推导了一种新的瞬时原位测量方法(励磁脉冲方法,EPM),并在三壁上进行了实验性应用,表明可以在小于3的范围内测量Rc值。 2小时将结果与通过ISO 9869方法获得的结果进行比较,显示出很好的一致性。另外,EPM测量技术可以提供平均体积热容和热导率。还表明,通过使用附加的热通量计,可以轻松地改进ISO 9869方法。据信,EPM为快速准确地估算未知结构中的热阻做出了重大贡献,因此也为建筑物能耗的预测准确性做出了重大贡献。 (C)2016 Elsevier B.V.保留所有权利。

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