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首页> 外文期刊>Journal of building physics >Thermal and hygric assessment of an inside-insulated brick wall: 2D critical experiment and computational analysis
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Thermal and hygric assessment of an inside-insulated brick wall: 2D critical experiment and computational analysis

机译:内保温砖墙的热力和热力评估:2D临界实验和计算分析

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摘要

A combined experimental-computational approach is used for the analysis of hygrothermal performance of a brick wall provided with interior thermal insulation system. A 2D laboratory experiment is performed to determine temperature and moisture fields in a characteristic segment of the envelope over a sufficiently long period including cold winter months. Then, a computational model of moisture and heat transport is developed, using an integral two-phase balance equation capable of distinguishing between the particular phases of water and an enthalpy-based heat balance equation. A 2D computational representation of the experiment is used for model calibration and identification of unknown parameters, resulting in a very good agreement of experimental and calculated fields, with R ~(2)between 0.9687 and 0.9888. The calibrated model is subsequently used for a long-term hygrothermal assessment of the studied detail to demonstrate the functionality of the interior thermal insulation system, as well as the applicability of the developed model.
机译:实验与计算相结合的方法用于分析设有内部隔热系统的砖墙的湿热性能。进行了2D实验室实验,以确定在足够长的时间内(包括寒冷的冬季),信封特征段中的温度和湿度场。然后,使用能够区分水的特定相和基于焓的热平衡方程的积分两相平衡方程,开发了水分和热传输的计算模型。实验的二维计算表示用于模型校准和未知参数的识别,从而使实验场和计算场非常吻合,R〜(2)在0.9687和0.9888之间。校准后的模型随后用于所研究细节的长期湿热评估,以证明内部隔热系统的功能以及所开发模型的适用性。

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