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A new method for calculating the thermal effects of irregular internal mass in buildings under demand response

机译:一种计算需求响应下建筑物内部不规则内部热效应的新方法

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Accurately modeling thermal storage and discharge play a pivotal role in predicting the peak savings of demand response buildings. Considerable studies have been conducted on the transient thermal behavior of building envelopes, much of which has focused on the thermal mass effects of building envelopes and floors. However, it is unclear how to precisely describe the cooling storage effects of irregular internal mass such as furniture. EnergyPlus and other simulation tools have internal mass models, but these models require ambiguous inputs such as internal mass surface area, thickness, volume and thermal properties. These inputs are impossible to obtain due to the irregular shapes and random spatial distributions of internal mass. In this paper, the novel "Effective Area" method is proposed that improves the theory of the conventional "Equivalent Slab" method. The new method establishes a relationship between the actual furniture and the equivalent furniture through a converted coefficient in the dynamic heat transfer equations. Experiments are conducted to test and verify the accuracy of the new method and to calculate common parameters, such as the converted coefficient and the distribution density of the irregular internal mass in some typical office setups. (C) 2016 Elsevier B.V. All rights reserved.
机译:准确地对蓄热和排放进行建模在预测需求响应建筑物的峰值节省方面起着关键作用。关于建筑物围护结构的瞬态热行为已经进行了相当多的研究,其中许多研究集中在建筑物围护结构和地板的热质量效应上。但是,不清楚如何精确地描述不规则内部物质(例如家具)的冷却存储效果。 EnergyPlus和其他模拟工具具有内部质量模型,但是这些模型需要模棱两可的输入,例如内部质量表面积,厚度,体积和热性质。由于内部质量的不规则形状和随机空间分布,因此无法获得这些输入。本文提出了一种新颖的“有效面积”方法,该方法改进了传统“等效板”方法的理论。新方法通过动态传热方程中的转换系数在实际家具和等效家具之间建立关系。进行实验以测试和验证该新方法的准确性,并计算一些常用参数,例如在某些典型的办公室设置中转换系数和不规则内部质量的分布密度。 (C)2016 Elsevier B.V.保留所有权利。

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