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The impact of vertical vegetation on thermal performance of high-rise office building facades in Mediterranean climate

机译:垂直植被对地中海气候高层办公楼立面热性能的影响

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Nowadays, vertical greenery systems are considered as a promising solution for improving energy efficiency, while providing environmental and socio-economic benefits. However, a literature gap regarding their quantitative effects on building?s thermal performance exists. The main aim of this paper is to initiate an analytical approach towards evaluating the greenery effectiveness in reducing the energy loads and improving the indoor thermal comfort, contributing to the current body of knowledge. The main novelty and scientific significance consist of evaluating different design strategies of green facade and shading systems, widely implemented on building envelopes, even though no previous study has provided scalable results regarding their efficiency. Several design variables including WWR (window-to-wall ratio), LAI (leaf area index), and plant height are selected for a comprehensive whole-building energy performance analysis. The results highlight the efficiency of vegetation strategies on opaque walls achieving a significant range of energy reduction from 9% up to 11% for 50% window-to-wall ratio scenarios and from 3% up to 6% for 70% window-to-wall ratio scenarios, with 1 ?C up to 2 ?C indoor air and mean radiant temperature increase in the winter period. Additionally, the impact of vertical greenery effectiveness on a fully glazed building scenario, rarely mentioned in previous studies has been proved, providing a considerable reduction of 4.7 ?C indoor air temperature and 9 ?C radiant temperature in the summer period, ranging from 14% up to 34% energy savings. The performed simulation results generate a fundamental framework towards early design decision-making stages. CO 2021 Elsevier B.V. All rights reserved.
机译:如今,垂直绿叶系统被认为是提高能源效率的有希望的解决方案,同时提供环境和社会经济益处。然而,存在关于它们对建筑物热性能的定量影响的文学差距。本文的主要目的是启动分析方法来评估减少能量负荷并改善室内热舒适度的绿色效果,为目前的知识贡献。主要的新颖性和科学意义在于评估绿色的门面的不同的设计策略和遮阳系统,对建筑围护结构广泛实施,尽管没有先前的研究已提供了有关其效率可扩展性的结果。选择包括WWR(窗口与壁比),莱(叶面积指数)和工厂高度的设计变量,以实现全面的全建筑能量性能分析。结果突出了不透明墙体植被策略效率,从而实现了50%窗口与壁比场景的9%高达11%的高度能量减少,70%窗口的3%至6% - 墙壁比场景,1?C最多2?C室内空气和平均辐射温度升高。此外,已经证明,在先前的研究中,垂直绿化效率对完全玻璃建筑场景的影响,已经证明,在以前的研究中,在夏季期间提供了相当大降低的4.7?C室内空气温度和9?C辐射温度,范围从14%节能高达34%。所执行的仿真结果为早期设计决策阶段产生了基本框架。 CO 2021 elestvier b.v.保留所有权利。

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