墙-地热桥内水分分布及其对霉菌生长的影响。

Yucong Xue, Yifan Fan, Jiang Lu, Jian Ge
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引用次数: 0

摘要

建筑围护结构中的湿气增加了建筑物的能耗,并诱发霉菌生长,由于热桥的不同湿热特性和复杂的结构,这种情况可能会在热桥区域内放大。在本研究中,我们的目的是(1)揭示典型热桥(即墙对地热桥,WFTB)及其周边地区的水分分布;(2)调查中国湿热夏季/寒冷冬季地区(杭州市)的建筑围护结构(包括墙对地热桥和墙体主体部分)中的霉菌生长情况。通过5年的瞬态数值模拟,模拟了流域的水分分布。模拟结果表明,受WFTB的影响,水汽分布呈现明显的季节和空间差异。潮湿的地方有较高的霉菌生长风险。外表面铺设保温层可以降低整体湿度,但水分分布不均匀会促进霉菌生长和水汽凝结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The moisture distribution in wall-to-floor thermal bridges and its influence on mould growth.

The moisture distribution in wall-to-floor thermal bridges and its influence on mould growth.

The moisture distribution in wall-to-floor thermal bridges and its influence on mould growth.

The moisture distribution in wall-to-floor thermal bridges and its influence on mould growth.

Moisture in building envelopes increases the energy consumption of buildings and induces mould growth, which may be amplified within the area of thermal bridges due to their different hygrothermal properties and complex structures. In this study, we aimed to (1) reveal the moisture distribution in the typical thermal bridge (i.e., wall-to-floor thermal bridge, WFTB) and its surrounding area and (2) investigate the mould growth in a building envelope that includes both a WFTB and the main part of a wall, in a humid and hot summer/cold winter region of China (Hangzhou City). The transient numerical simulations which lasted for 5 years were performed to model the moisture distribution. Simulated results indicate that the moisture distribution presents significant seasonal and spatial differences due to the WFTB. The areas where moisture accumulates have a higher risk of mould growth. The thermal insulation layer laid on the exterior surface of a WFTB can reduce the overall humidity while uneven moisture distribution may promote mould growth and water vapour condensation.

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