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Vertical greenery systems for the energy retrofitting of buildings in Mediterranean climate: a case study in Catania, Italy

机译:地中海气候建筑物能源改造的垂直绿色系统:意大利卡塔尼亚的案例研究

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The increasing awareness of issues like climate change and reduction of available fossil resources moves scientific research into the development of new technological solutions in order to reduce the energy and environmental impact of buildings. Hence, in recent years, key concepts such as energy saving and environmental sustainability affected both the design of new buildings and the retrofitting of existing buildings. The present study aims to evaluate the energy behavior of an existing building in Mediterranean area, and to quantify the potential contribution provided by retrofitting solutions implying the adoption of green roofs and green facades. Dynamic simulations, validated by comparison with experimental results, show that a green facade with dense foliage allows a reduction by 1.7 °C in the indoor air temperature and by 1.5 °C in the inside surface temperature, if compared to a traditional retrofit solution for the envelope. Furthermore, the outside surface temperature is reduced by 2.9 °C, and the cooling load is reduced by 32%. These results suggest that green facades are a viable solution to mitigate current environmental issues in buildings. Lower energy consumption corresponds to lower pollutants emissions and to economic savings in the use of the building.
机译:越来越越来越意识的气候变化和可用化石资源减少的问题将科学研究导致新技术解决方案的发展,以降低建筑物的能源和环境影响。因此,近年来,节能和环境可持续性等关键概念影响了新建筑的设计和现有建筑的改造。本研究旨在评估地中海地区现有建筑的能量行为,并量化改装解决方案提供的潜在贡献,这意味着采用绿色屋顶和绿色立面。通过与实验结果进行比较验证的动态模拟,表明,与传统改装解决方案相比,室内空气温度和内部表面温度下的绿色立面允许减少1.7°C。信封。此外,外表面温度降低了2.9℃,冷却负荷减少了32%。这些结果表明,绿色外墙是一种可行的解决方案,可以减轻建筑物中的当前环境问题。较低的能量消耗对应于降低污染物排放和建筑物使用中的经济储蓄。

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