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Hygrothermal bridge effects on the performance of buildings

机译:湿热桥对建筑物性能的影响

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Although the thermal bridge effects on the building energy performance have been presented in the literature, the multidimensional hygrothermal analysis of the building envelope is still a challenge due to many difficulties such as modeling complexity, computer run time, numerical convergence and highly moisture-dependent properties. However, their effects are of paramount importance due to the local increase of heat and mass flux densities so that moisture can be easily accumulated around internal corners, increasing mold growth risk and causing structural damage. Therefore, for analyzing the effects of building lower and upper corners, a multidimensional model has been developed to calculate the coupled heat, air and moisture transfer through building envelopes. The algebraic equations are simultaneously solved for the three driving potentials - temperature, vapor pressure and gas pressure gradients - to improve the numerical stability of the discretized model. In the Results section, the coupling of the upper corner, wall, lower corner (with different types of foundations), ground and floor are analyzed in terms of temperature and relative humidity profiles, vapor flow and heat flux, showing the importance of a detailed hygrothermal analysis for accurately predicting building energy consumption, mold growth and structural damage risks.
机译:尽管文献中已经介绍了热桥对建筑能源性能的影响,但是由于许多困难,例如建模复杂性,计算机运行时间,数值收敛和高度依赖湿度的特性,对建筑围护结构进行多维湿热分析仍然是一个挑战。 。但是,由于热量和质量通量密度的局部增加,它们的作用至关重要,因此水分很容易在内部拐角处积聚,从而增加了霉菌生长的风险并造成结构损坏。因此,为了分析建筑物上下角的影响,已开发了多维模型来计算通过建筑物围护结构的热,空气和湿气耦合传递。同时求解温度,蒸气压和气压梯度这三个驱动势的代数方程,以提高离散模型的数值稳定性。在“结果”部分中,根据温度和相对湿度分布,蒸气流和热通量分析了上角,墙,下角(具有不同类型的地基),地面和地面的耦合,显示了详细的重要性。湿热分析,可准确预测建筑能耗,霉菌生长和结构损坏风险。

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