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Impact Of Wind-driven Rain On Historic Brick Wall Buildings In A Moderately Cold And Humid Climate: Numerical Analyses Of Mould Growth Risk, Indoor Climate And Energy Consumption

机译:在中冷气候下,风雨对历史悠久的砖墙建筑的影响:霉菌生长风险,室内气候和能源消耗的数值分析

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This paper gives an onset to whole building hygrothermal modelling in which the interaction between interior and exterior climates via building enclosures is simulated under a moderately cold and humid climate. The focus is particularly on the impact of wind-driven rain (WDR) on the hygrothermal response, mould growth at interior wall surfaces, indoor climate and energy consumption. First the WDR load on the facades of a 4m × 4m × 10m tower is determined. Then the hygrothermal behaviour of the brick walls is analysed on a horizontal slice through the tower. The simulations demonstrate that the impact of WDR loads on the moisture contents in the walls is much larger near the edges of the walls than at the centre. The obtained relative humidity and temperature at the interior wall surfaces are combined with isopleths of generalised spore germination time of fungus mould. The results show that WDR loads can have a significant impact on mould growth especially at the edges of the walls. Finally, for the case analysed, the WDR load causes a significant increase of indoor relative humidity and energy consumption for heating.
机译:本文介绍了整个建筑物的湿热模型,其中模拟了在适度的寒冷和潮湿气候下通过建筑围护结构进行的内部和外部气候之间的相互作用。重点尤其放在风雨(WDR)对湿热响应,内壁表面霉菌生长,室内气候和能源消耗的影响上。首先,确定4m×4m×10m塔立面上的WDR载荷。然后在穿过塔的水平切片上分析砖墙的湿热行为。模拟表明,WDR载荷对墙体水分的影响在墙体边缘附近比在中心处大得多。在内壁表面获得的相对湿度和温度与真菌霉菌的广义孢子萌发时间的等数相结合。结果表明,WDR载荷会对模具的生长产生重大影响,尤其是在壁的边缘。最后,对于所分析的情况,WDR负载导致室内相对湿度和供暖能耗显着增加。

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