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Method for evaluating the snagging propensity of roofing membranes in buildings by roosting bats

机译:通过栖息蝙蝠评估建筑物中屋顶​​膜钩住倾向的方法

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摘要

Many buildings suitable as bat roosts contain synthetic roofing materials, hereafter referred to as Non-Bitumen Coated Roofing Membranes (NBCRMs) - this includes Breathable Roofing Membranes (BRMs) and non-Permeable Roofing Membranes (nPRMs), rather than 1F felts. Building regulations require all construction materials to be fit for purpose, but some BRMs (although appropriate for their intended purpose) can potentially threaten the viability of existing, legally protected roosts because of the way bats physically interact with their surface. With the assistance of the Isle of Wight Bat Hospital and real-world observations of how bats physically interact with NBCRMs within a roof void, we present a new laboratory test method capable of reproducing the progressive disintegration of NBCRM surfaces due to the plucking effect of bat claws. The resistance to NBCRM disintegration was characterized using a modified laboratory fabric pilling box test method. The method reproduced the 'fluffing' effects and projections of loops of filaments on the surface of BRMs that have been observed within bat roosts. It was established that spunbond nonwoven BRMs, can be highly susceptible to surface disintegration. The newly developed method is intended to aid selection of NBCRMs that reduce the risk to bats in their roosts, promoting bat conservation.
机译:许多适合作为蝙蝠栖息的建筑物含有合成屋顶材料,下文称为非沥青涂覆的屋顶膜(NBCRMS) - 这包括透气屋顶膜(BRMS)和不透水屋顶膜(NPRM),而不是1F纤维。建筑规定要求所有建筑材料都适合目的,但有些BRMS(虽然适用于其预期目的)可能会威胁到现有的合法保护栖息的可行性,因为蝙蝠与其表面物理相互作用。在Wight Bat医院岛的援助和蝙蝠内与NBCRMS如何与NBCRMS进行物理相互作用的现实观察,我们提出了一种新的实验室测试方法,能够在蝙蝠的拔除效果中再现NBCRM表面的渐进式崩解爪子。使用改性实验室织物丸盒试验方法表征了对NBCRM崩解的抗性。该方法再现了在BAT栖息地中观察到的BRMS表面上的长丝循环的“浮雕”的效果和突起。建立了纺粘非织造BRMS,可以高易受表面崩解的影响。新开发的方法旨在帮助选择NBCRMS,以降低蝙蝠在其栖息地的风险,促进蝙蝠保护。

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