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Calculation of transient phase change heat transfer through building envelopes: An improved enthalpy model and error analysis

机译:通过建筑包络的瞬态相变热传递计算:改进的焓模型及误差分析

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摘要

It is important to accurately predict the transient heat transfer process through building envelopes that have been enhanced with phase change materials (PCMs). An improved two-dimensional (2D) model, based on the enthalpy method, is presented in this paper. The proposed model handles, among other features, PCM's thermo-physical parameters, various melting and solidification temperature ranges, and multiple temperature turning points during phase change, more precisely than existing models (Zhang et al., 2011; Sharma et al., 2006; Sadasivam et al. 2011) [1-3]. The model was verified against experimental data from measurements in a concrete masonry units (CMUs) wall outfitted with PCMs. The results from the model verification indicated that the deviations of the proposed model were less than 0.40 degrees C for standard deviation and 0.80 degrees C for maximum deviation under the studied conditions. The corresponding relative errors were less than 2.9% for standard deviation and 5.7% for maximum deviation. The proposed model is necessary for the accurate calculation of and prediction of transient heat transfer through wall in the presence of PCMs. (C) 2019 Published by Elsevier B.V.
机译:重要的是准确地通过构建通过相变材料(PCM)增强的包络来准确预测瞬态传热过程。本文提出了一种基于焓方法的改进的二维(2D)模型。所提出的模型处理,其中PCM的热物理参数,各种熔化和凝固温度范围,以及相变期间的多个温度转位,比现有型号更精确(Zhang等,2011; Sharma等,2006 ; Sadasivam等人。2011)[1-3]。根据用PCMS承载的混凝土砌体单元(CMUS)墙壁的测量来验证该模型。模型验证的结果表明,对于标准偏差,所提出的模型的偏差小于0.40℃,并且在研究条件下最大偏差为0.80℃。标准偏差的相应相应误差小于2.9%,最大偏差为5.7%。所提出的模型是在PCMS存在下通过墙壁进行准确计算和预测瞬态传热的准确计算。 (c)2019年由elestvier b.v发布。

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