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Assessing the thermal performance of living wall systems in wet and cold climates during the winter

机译:评估冬季潮湿和寒冷气候下的活动墙系统的热性能

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As eastern China rapidly urbanizes, living walls are spreading swiftly across cities and consequently resulting in its stronger influence on the urban thermal environment. The objective of this study is to assess the effect of external living wall systems (LWSs) on indoor thermal environments in winters with low temperatures and high humidity levels. Four containers with different outer facades were arranged in Hangzhou and a comparative analysis was conducted on changes in the internal and external thermal environments of these containers. Results reveal that both the soil-filled planter pots and plants positioned on the LWSs play a role in indoor insulation while pots have a more stable effect. Good thermal performance of living walls can improve the energy efficiency of buildings. When the north-facing walls of the containers were equipped with planter pots, a bamboo living wall or a living wall with other plants, the internal temperatures were 0.4 degrees C, 1.7 QC and 1 degrees C higher during the insulation period, respectively, relative to those of the reference container, and the all-day insulation period of the north-facing LWSs lasted more than 20 h a day. By contrast, thermal benefit of the north-and south-facing LWSs was weaker. Compared to more widely used plant species, dwarf bamboo increased insulation and wind resistance levels on the living walls, creating significantly higher temperatures on living wall surfaces and within containers in winter, indicating that plant features have a strong positive impact on the insulating features of living walls. This study not only makes up for the lack of research on the thermal performance of LWSs in the researched area during the winter, but also is of great significance to the development and application of living walls with better thermal benefits, such as orientation setting, plant selection, building energy saving, etc. (C) 2019 Elsevier B.V. All rights reserved.
机译:随着中国东部城市的快速城市化,生活墙在城市之间迅速蔓延,因此对城市热环境的影响也越来越大。这项研究的目的是评估外部居住墙系统(LWS)在低温和高湿度的冬季对室内热环境的影响。在杭州安排了四个外立面不同的容器,并对这些容器的内部和外部热环境的变化进行了比较分析。结果表明,装满土壤的花盆和放置在低WS上的植物均在室内保温中起作用,而花盆的效果更稳定。居住墙的良好热性能可以提高建筑物的能源效率。当容器的朝北壁装有花盆,竹生活墙或其他植物生活墙时,在保温期间,内部温度分别比相对温度高0.4摄氏度,1.7摄氏度和1摄氏度。与参考集装箱相比,朝北的低烟无烟者的全天保温期持续了超过20公顷的天。相比之下,朝北和朝南的低WS的热效益较弱。与更广泛使用的植物物种相比,矮竹增加了生活壁的隔热和抗风能力,冬季在生活壁表面和容器内产生明显更高的温度,这表明植物特征对生活的隔热特征产生了强烈的积极影响墙壁。这项研究不仅弥补了冬季研究区域内对轻型小木屋热性能的缺乏研究,而且对定向设置,植物等具有更好热效益的活动墙的开发和应用具有重要意义。选择,建筑节能等。(C)2019 Elsevier BV保留所有权利。

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