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Thermal performance of different planting substrates and irrigation frequencies in extensive tropical rooftop greeneries

机译:广泛的热带屋顶绿化中不同种植基质的热性能和灌溉频率

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The need for the better use of scarce planetary resources has never been more evident than it is today. However, this need is poorly reflected in human housing. In recent years, there has been a growing realization of the importance of constructing human shelters that better conserve energy and water through appropriate insulation and architectural designs. Among the important advancements in these areas is the use of rooftop greeneries for both energy and water conservation. This paper performs an investigation into this topic within the specific climatic context of tropical regions. Long-term experimental results are provided from a four-floor building in Kaohsiung in the southern part of Taiwan. The study involves a fully monitored extensive rooftop greenery and examines four different plant substrates, three different irrigation regimes, and different types of drought-enduring plants to find the most efficient combination of all three in providing maximum heat insulation and water usage efficiency. The attenuation of solar radiation through the vegetation layer is evaluated, as well as the thermal insulation performance of the rooftop greenery structure. Among the substrates, burned sludge has the best thermal reduction percentage of heat amplitude under the roof slab surface (up to 84.4%). Irrigation twice a week has the best thermal reduction percentage of heat amplitude (91.6%). Among the plant types, Sansevieria trifasciata cv. Laurentii Compacta and Rhoeo spathaceo cv. Compacta are found to be suitable for extensive rooftop greeneries because they have the best coverage ratio and are most drought enduring.
机译:如今,对更好地利用稀缺行星资源的需求从未如此明显。但是,这种需要很少反映在人的住房中。近年来,人们越来越认识到通过适当的绝缘和建筑设计来建造更好地节约能源和水的人类庇护所的重要性。这些领域的重要进步之一是利用屋顶绿化来节约能源和水资源。本文在热带地区的特定气候环境下对该主题进行了调查。来自台湾南部高雄市一栋四层楼的建筑提供了长期的实验结果。这项研究涉及全面监控的屋顶绿化,并研究了四种不同的植物基质,三种不同的灌溉方式以及不同类型的耐旱植物,以找到这三种方法中最有效的组合,以提供最大的隔热和水利用效率。评估了穿过植被层的太阳辐射的衰减,以及屋顶绿化结构的隔热性能。在这些基材中,燃烧的污泥在屋顶平板表面下的热振幅具有最佳的热减少率(最高84.4%)。每周两次灌溉的热量降低幅度最好(91.6%)。在植物类型中,Sansevieria trifasciata cv。 Laurentii Compacta和Rhoeo spathaceo简历。已发现Compacta适合广泛的屋顶绿化,因为它们具有最佳的覆盖率并且最耐旱。

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