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Y Energy performance of a medium scale green roof system installed on a commercial building using numerical and experimental data recorded during the cold period of the year

机译:是使用一年中寒冷时期记录的数值和实验数据,在商业建筑上安装的中型屋顶绿化系统的能源性能

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The aim of this study is to investigate the energy performance of a medium scale green roof system installed on a two-story commercial building in Athens, Greece and its possible contribution to the mitigation of the urban heat island phenomenon. For the purpose of this research, in-situ measurements of temperature and humidity took place during the cold period of the year. The surface temperature of the conventional concrete floor of the roof was found to be up to 21.9 K higher than the one of the planted area during the day, while at the first hours of the day, the surface temperature of the green roof appeared to be up to 1.6 K higher than the one of the cement floor of the roof. Differences of the surface temperatures of the varying plants of the green roof were measured and led to a proposal of an optimum selection among them for the best performance of such a green roof system. Furthermore, simulations for this building were performed by using the EnergyPlus program. It was calculated that, the indoor air temperature, for a non air conditioned status of the building, was decreased up to 1.1 K during a typical summer day and was increased up to 0.7 K during a typical winter day. Lastly, an overall saving of 15.1% for a whole year on the energy consumption of the building was calculated. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究的目的是研究安装在希腊雅典两层商业建筑上的中型绿色屋顶系统的能源性能,及其对缓解城市热岛现象的可能贡献。出于本研究的目的,在一年的寒冷期间对温度和湿度进行了现场测量。发现屋顶的常规混凝土地板的表面温度比白天的种植区域高21.9 K,而在一天的头几个小时,绿色屋顶的表面温度似乎是比屋顶的水泥地板高出1.6K。测量了屋顶绿化的各种植物的表面温度的差异,并提出了在这种屋顶绿化系统的最佳性能中进行最佳选择的建议。此外,使用EnergyPlus程序对该建筑物进行了仿真。经计算,在建筑物的非空调状态下,室内空气温度在典型的夏季白天降低至1.1 K,在典型的冬季期间升高至0.7K。最后,计算得出该建筑物一年总共可节省15.1%的能源。 (C)2016 Elsevier B.V.保留所有权利。

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