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Determination of the thermal resistance of walls through a dynamic analysis of in-situ data

机译:通过现场数据动态分析确定墙的热阻

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摘要

In this paper a method for calculating the thermal resistance of a wall through the dynamic analysis of both heat flux and surface temperature samples is presented. Such a method models the transient thermal response of the wall through a linear relation with constant parameters that links the instantaneous heat flux at the inner surface of the wall to the temperature difference between the surfaces of the same wall at the same instant. Additionally, the linear relation mentioned above also links a certain number p of terms formed, each of them, by differences of the same variables related to the considered instant and to p previous instants. The number of the parameters of the model is derived through the principles of hypothesis testing. At this stage, the proposed method is applied to simulated data as indicated by the proposal of European standard 12494, 1996. The results shown here have been concerning with different typologies of wall, namely light, medium and heavy, as well as with 24 data sets obtained by picking data in the one-year time series. Although limited to winter and summer measurement periods, a comparison between the proposed method and classic average one is also performed.
机译:本文提出了一种通过动态分析热通量和表面温度样本来计算墙体热阻的方法。这种方法通过具有恒定参数的线性关系对壁的瞬态热响应进行建模,这些参数将壁内表面的瞬时热通量与同一时刻同一壁表面之间的温差相关联。另外,上述线性关系还通过与所考虑的时刻和p个先前时刻相关的相同变量的差来链接形成的一定数量的项,每个项都由它们构成。模型的参数数量是通过假设检验的原理得出的。在此阶段,该提议的方法被应用于模拟数据,如欧洲标准12494,1996年的提议所指示。此处显示的结果涉及不同类型的墙,即轻型,中型和重型,以及24个数据通过选择一年时间序列中的数据获得的集合。尽管仅限于冬季和夏季测量期,但也对建议的方法与经典平均值进行了比较。

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