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Alternatives to Sedum on green roofs: Can broad leaf perennial plants offer better ‘cooling service’?

机译:绿色屋顶上的景天替代品:多年生阔叶植物能否提供更好的“降温服务”?

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摘要

Green roof plants alter the microclimate of building roofs and may improve roof insulation. They act by providing cooling by shading, but also through transpiration of water through their stomata. However, leaf surfaces can become warmer when plants close the stomata and decrease water loss in response to drying substrate (typically associated with green roofs during summers), also reducing transpirational cooling. By using a range of contrasting plant types (Sedum mix – an industry green roof ‘standard’, Stachys byzantina, Bergenia cordifolia and Hedera hibernica) we tested the hypothesis that plants differ in their ‘cooling potential’. We firstly examined how leaf morphology influenced leaf temperature and how drying substrate altered that response. Secondly, we investigated the relationship between leaf surface temperatures and the air temperatures immediately above the canopies (i.e. potential to provide aerial cooling). Finally we measured how the plant type influenced the substrate temperature below the canopy (i.e. potential for building cooling). In our experiments Stachys outperformed the other species in terms of leaf surface cooling (even in drying substrate, e.g. 5 oC cooler compared with Sedum), substrate cooling beneath its canopy (up to 12 oC) and even - during short intervals over hottest still periods - the air above the canopy (up to 1 oC, when soil moisture was not limited). We suggest that the choice of plant species on green roofs should not be entirely dictated by what survives on the shallow substrates of extensive systems, but consideration should be given to supporting those species providing the greatest eco-system service potential.
机译:绿化屋顶植物可以改变建筑物屋顶的微气候,并可以改善屋顶的隔热性。它们通过遮荫提供冷却作用,但也可以通过水通过它们的气孔蒸腾作用。但是,当植物关闭气孔并响应于干燥的基质(通常在夏季与绿色屋顶相关)而减少水分流失时,叶片表面会变暖,这也减少了蒸腾作用。通过使用一系列不同的植物类型(景天混合-一种工业绿色屋顶的“标准”植物,水苏属byzantina,Bergenia cordifolia和Hedera hibernica),我们检验了植物“冷却潜力”不同的假设。我们首先研究了叶片形态如何影响叶片温度以及干燥基质如何改变该响应。其次,我们研究了叶片表面温度与冠层正上方的空气温度之间的关系(即提供空中冷却的潜力)。最后,我们测量了植物类型如何影响树冠以下的基质温度(​​即建筑物降温的潜力)。在我们的实验中,水苏树在叶片表面冷却(甚至在干燥的基质上,例如与景天相比较凉爽的5 oC),在其冠层以下的基质冷却(最高12 oC)甚至在短时间内在最热的静止时间内都优于其他物种。 -冠层上方的空气(当土壤湿度不受限制时,最高可达1 oC)。我们建议,对绿色屋顶上的植物物种的选择不应完全取决于在广泛系统的浅层基质上生存的物种,而应考虑支持那些提供最大生态系统服务潜力的物种。

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