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Implication of plant selection for building insulation

机译:选择工厂对建筑保温材料的影响

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Green infrastructure can increase sustainability of urban environments and improve the wellbeing of urban inhabitants by offering invaluable ecosystem services. In terms of thermal effects, if integrated in the building architecture, plants will increaseinsulation. This can be beneficial especially in summer but in some cases also in winter. However, little information is available on how different plants could be easily integrated onto the building's envelop, comparing their potential for this annual'temperature regulation' service. Based on experimental work over two years (2012-2013) in Reading (UK), we explored the implications of plant selection on both summer and winter insulating properties, however, in this paper we discuss results related tothe winter period only. We compared substrate temperatures below succulent plant canopies, usually used as green roof coverage, with alternative non-succulent plant canopies and bare substrate covering purpose-built model roofs (1.5x1.5x0.1 m). We measured substrate temperature at 10 and 60 mm depth and canopy attributes (LAI and canopy height). Results suggest that over winter all plants will generally provide similar insulating effects, regardless of their attributes. On warm winter days (i.e. days with maximum air temperature >10°C) plants may reduce insulation, compared to bare substrate. However, on very cold days and nights (i.e., days with maximum air temperature <3°C or nights with minimum air temperature <0°C), or in periods when the surface is covered by snow, some plants (e.g., Stachys and Seduni) may provide better insulation than bare substrate.
机译:绿色基础设施通过提供宝贵的生态系统服务,可以提高城市环境的可持续性并改善城市居民的福祉。在热效应方面,如果将其集成到建筑架构中,植物将增加隔热效果。特别是在夏季,这可能是有益的,但在某些情况下,在冬天也是如此。但是,关于如何将不同的植物轻松地整合到建筑物的外壳中的信息很少,将它们用于这项年度“温度调节”服务的潜力进行了比较。基于两年(2012-2013年)在英国雷丁的实验工作,我们探索了植物选择对夏季和冬季隔热性能的影响,但是,在本文中,我们仅讨论与冬季相关的结果。我们将通常用作绿色屋顶覆盖物的肉质植物冠层以下的基质温度与非肉质植物冠层和裸露的基质覆盖的特制模型屋顶(1.5x1.5x0.1 m)进行了比较。我们测量了10毫米和60毫米深度处的基材温度和冠层属性(LAI和冠层高度)。结果表明,在冬季,所有植物无论其属性如何,通常都会提供相似的隔热效果。在温暖的冬季(即最高气温> 10°C的日子),与裸露的基质相比,植物可能会降低隔热性能。但是,在非常寒冷的白天和黑夜(即最高气温低于3°C的白天或最低气温低于0°C的夜晚),或在地面被雪覆盖的时期,某些植物(例如水苏树和Seduni)可以提供比裸露的基材更好的绝缘性能。

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