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A new analytical approach for simplified thermal modelling of buildings: Self-Adjusting RC-network model

机译:一种用于简化建筑物热模型的新分析方法:自调整RC网络模型

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摘要

A novel method for adjusting the parameters of a lumped parameter model for the transient thermal response of building constructions is presented. Previous analytical adjustment methods can be complex and inaccurate, while optimization algorithms, although more accurate, require prior simulation using a high-order reference model, and so provide no advantages to be integrated into simulation programs. This work presents a methodology for the analytical adjustment of a first-order model based on the hypothesis that the position of the capacitance varies in every time step in response to changes in the excitation value. By comparison with a reference model and using a wide range of constructions (420), the functional form of this dependence was determined in accordance with the value of time step and properties and thickness of the element. Using different typical constructions (41), the method was validated by comparison with the reference model in terms of surface heat fluxes, surface temperatures and indoor air temperature. The results showed an excellent agreement with the reference model for surface temperatures and indoor air temperature, and good agreement for surface heat fluxes. The method can be integrated into simulation programs with a low computational cost, sufficient accuracy, universality and adaptable time step. (C) 2016 Elsevier B.V. All rights reserved.
机译:提出了一种新的方法来调整集总参数模型的参数,以用于建筑物的瞬态热响应。先前的分析调整方法可能很复杂且不准确,而优化算法虽然更准确,但需要使用高阶参考模型进行事先仿真,因此没有优势可以集成到仿真程序中。这项工作提出了一种基于以下假设的分析调整一阶模型的方法,该假设是,电容的位置会在每个时间步长随激励值的变化而变化。通过与参考模型进行比较并使用各种结构(420),根据时间步长的值以及元件的特性和厚度确定了这种依赖性的功能形式。使用不同的典型构造(41),通过与参考模型进行表面热通量,表面温度和室内空气温度的比较,对该方法进行了验证。结果表明,该模型与参考模型在表面温度和室内空气温度方面具有极好的一致性,并且在表面热通量方面具有很好的一致性。该方法可以以低计算成本,足够的准确性,通用性和可适应的时间步长集成到仿真程序中。 (C)2016 Elsevier B.V.保留所有权利。

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