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Suitability of Wooden Shingles for Ventilated Roofs: An Evaluation of Ventilation Efficiency

机译:用于通风屋顶的木质带状瓦的适用性:通风效率评估

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摘要

Wooden shingles are a traditional roofing material on many culturally important building artifacts. Currently, the roof space of many traditional buildings is used for residential purposes and, consequently, cold roof constructions with ventilation layers are applied. In this study, it is evaluated whether the moisture content of wooden shingles is adversely affected by such constructions, compared with unvented shingle roofs over cold attics and whether a temporary closing of the ventilation gaps at the eaves contributes to a lower wood moisture content. Various sensors were installed in and around a building with wooden shingles on a ventilated roof and temperature, air moisture, and air speed in the ventilation layer were measured throughout a year. The findings show that the air speed in the ventilation layer can be adjusted from 0.06 to 0.25 m/s depending on the layout of the eaves. A hygrothermal model was applied to evaluate the effects of different ventilation operation modes and cardinal orientations of the roof on the moisture content of the wooden shingles. The results show that roof ventilation results in a 1% lower shingle moisture content on average than an unventilated roof over a cold attic. Finally, it is shown that the wood moisture content repeatedly reaches dangerous levels above 25% throughout a year, which is worse on north-facing roofs and, hence, measures to increase the dry-out are relevant.
机译:在许多文化重要的建筑物文物中是一种传统的屋顶材料。目前,许多传统建筑的屋顶空间用于住宅目的,因此,应用具有通风层的冷顶结构。在该研究中,与冷阁楼上的未辩护的瓦片屋顶相比,评估木质瓦片的水分含量是否受到这种结构的不利影响。屋檐上的通风间隙是否有助于较低的木材水分含量。各种传感器安装在一座建筑物周围,在通风屋顶和温度,空气湿度,空气湿度和通风层中的空气速度的一年内。结果表明,根据屋檐的布局,通风层中的空气速度可根据屋檐的布局调节0.06至0.25米/秒。应用湿热模型来评估屋顶的不同通风操作模式和基于木质瓦片的水分含量的效果。结果表明,屋顶通风导致平均遮盖屋顶平均降低瓦片水分含量,而不是冷阁楼。最后,显示木材水分含量在一年内反复达到25%以上的危险水平,这在面向朝北屋顶更糟糕的是,因此,增加干涸的措施是相关的。

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