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Plant cover and floristic composition effect on thermal behaviour of extensive green roofs

机译:植物覆盖和植物组成对广泛绿化屋顶热行为的影响

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In the last few years an increasing attention has been paid to efficient energy construction systems in the building sector. Although in this contest extensive green roofs are reported to be very effective and sustainable systems, the fact that the main agents of this systems are living organisms have generated doubts, especially in locations where the development of plants and vegetation can be greatly affected by climate. This study aims to investigate the thermal performances of a 2000 m(2) particular proprietary extensive green roof system, located on the city of Lleida (Spain), classified as Dry Mediterranean Continental climate. First, plant cover and floristic composition analysis were carried out to evaluate the dynamic of the plant layer over the surface. Then, according to the result of the botanic analysis, summer and winter study in terms of spatial and temporal factors were conducted focussing on the substrate layer, evapotranspiration effect and comparing the different behaviour of the system in low (10%) and high (80%) plant cover conditions. In this extensive green roof, the results showed temporal and spatial changes in floristic composition, with a stable cover of Sedum sp between 20 and 40 %, and a peak of colonizing species in spring and early summer. The increase in vegetation cover appears to have few effects on the above nearby roof environment because of the low moisture level in the substrate layer so that the cooling effect provided by the evapotranspiration does not take place. In addition, the increased presence of vegetation canopy may induce a limitation in substrate night cooling whereas serves as good shield for solar radiation during the day. Finally, the study also reveals the importance of the spatial factor in extensive green roofs, which can lead to not negligible variations on the thermal performance, as well as the floristic composition. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在过去的几年中,人们越来越关注建筑领域中的高效能源建筑系统。尽管在本次比赛中,据报道大面积的屋顶绿化是非常有效和可持续的系统,但该系统的主要推动力是活生物体这一事实引起了人们的怀疑,尤其是在植物和植被的发育可能受到气候极大影响的地区。这项研究的目的是调查位于莱里达市(西班牙)的2000 m(2)特别专有的广泛的绿色屋顶系统的热性能,该系统被列为干旱地中海大陆性气候。首先,进行植物覆盖和植物区系分析,以评估表面上植物层的动态。然后,根据植物学分析的结果,针对时空因素进行了夏季和冬季研究,重点研究了基质层,蒸散效应,并比较了低(10%)和高(80%)系统的不同行为。 %)植物覆盖条件。在这个宽阔的绿色屋顶上,结果显示了植物组成的时空变化,景天属sp的稳定覆盖率在20%至40%之间,春季和初夏的殖民化物种达到峰值。植被覆盖的增加似乎对上述附近的屋顶环境几乎没有影响,因为底物层中的水分含量低,因此不会发生由蒸散作用提供的冷却作用。另外,增加的植被冠层可能会限制基质夜间冷却,而在白天则可以很好地屏蔽太阳辐射。最后,研究还揭示了空间因素在广阔的绿色屋顶中的重要性,这可能导致热性能以及植物组成的变化不容忽视。 (C)2015 Elsevier Ltd.保留所有权利。

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