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Mixed equivalent wall method for dynamic modelling of thermal bridges: Application to 2-D details of building envelope

机译:热桥动态建模的混合等效墙方法:应用于建筑物围护结构的二维细节

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摘要

This paper presents a mixed method to determine a 1-D three-layer wall having the same static and dynamic behaviours as a multidimensional thermal bridge. It is based on the calculations of thermal resistance, heat capacity, structure factors and an objective function using harmonic heat fluxes features. This mixed method is applied to three 2-D details. The heat flux through inner surface is analysed over time for a step solicitation and for given boundary conditions: a sinus evolution of the inside temperature and a severe or a more realistic evolution of the outside temperature. Results are really satisfactory, evolution of heat flux through the thermal bridge is close to that of the corresponding equivalent wall. For an outside temperature profile (T-e) close to real data, the error on integral value of heat flux is less than 1% in each case. The results for equivalent walls are significantly better than for a classic 1-D evaluation: for a severe evolution of T-e the average error is 6 to 28 times lower in the tested cases. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文提出了一种确定一维三层墙的静态和动态行为与多维热桥相同的混合方法。它基于热阻,热容量,结构因子和使用谐波热通量特征的目标函数的计算。此混合方法应用于三个2-D细节。逐步分析通过内表面的热通量,以进行逐步诱导和给定的边界条件:内部温度的正弦曲线演变和外部温度的剧烈或更现实的演变。结果确实令人满意,通过热桥的热通量与相应等效壁的热通量接近。对于接近真实数据的外部温度曲线(T-e),每种情况下热通量积分值的误差均小于1%。等效墙的结果明显优于经典的一维评估:对于T-e的严重演变,在测试情况下,平均误差要低6至28倍。 (C)2018 Elsevier B.V.保留所有权利。

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