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The influence of waterproof coating on the hygrothermal performance of a brick facade wall system

机译:防水涂层对砖门墙系统湿热性能的影响

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The effect of a waterproof coating on the long-term hygrothermal performance of a high-rise wall was investigated by combining experimental and numerical approaches. The water vapor permeances (WVP) of the waterproof coating on the brick and mortar masonry were experimentally determined as a function of relative humidity. These performance characteristics for the (WVP) of the waterproof coatings applied on the brick and mortar surface layers were included in the LATENITE version 1.2 hygrothermal model. A series of 1-D and 2-D simulations were performed studying the effects of waterproof coatings on a selected wall system. Additional simulations studied the effect of the existence of cracks. Results indicate that brick-mortar interaction as a system must be included in analysis of the hygrothermal performance of the waterproof coating. Simplifications to 1-D can lead to erroneous results. Rain penetration can be far more important than ambient surface diffusion fluxes and must be included in all hygrothermal analysis. The waterproof coating reduced the yearly average heat flux by 3 percent for the city of Vancouver by reducing the latent heat effects of absorbed moisture from wind-driven rain.
机译:通过组合实验和数值方法,研究了防水涂层对高层壁的长期湿热性能的影响。砖和砂浆砌体上的防水涂层的水蒸气渗透(WVP)被实验确定为相对湿度的函数。在砖和砂浆表面层上施加的防水涂层的这些性能特征包括在Latenite版本1.2湿热的模型中。进行了一系列1-D和2-D模拟,研究了防水涂层对选定壁系统的影响。额外的模拟研究了裂缝存在的影响。结果表明,砖砂浆相互作用作为系统必须包括在防水涂层的湿热性能分析中。对1-D的简化可以导致错误的结果。雨水渗透比环境表面扩散通量更重要,并且必须包含在所有湿热分析中。防水涂料通过降低风力驱动的雨水的潜伏水分的潜热效应,减少了温哥华城市的年平均水平3%。

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