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Effect of plant traits and substrate moisture on the thermal performance of different plant species in vertical greenery systems

机译:植物性状和基材水分对垂直绿化系统不同植物物种热性能的影响

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摘要

This study evaluated the effects of plant traits and substrate moisture on the thermal performance of four herbs and four shrubs, which are the most commonly used species in vertical greenery systems (VGSs), in humid subtropical Hong Kong over a one-year period. The canopy temperature reduction on sunny days was significantly correlated with canopy coverage and leaf area index (LAI), but not with daily evapotranspiration (ET). This indicated that the shading effect of VGSs, which is related to canopy coverage and LAI, was more prominent than ET cooling. The lack of significant correlation between substrate moisture, ET and canopy temperature indicated that substrate moisture and ET did not significantly enhance the canopy cooling of VGSs. Substrate moisture notably cooled the substrate on sunny days, and warmed the substrate on rainy days, which significantly affected substrate thermal behavior, but had less effect on canopy air temperature. The use of VGSs with eight common plant species on building envelopes reduced steady-state heat conduction by 18.7-39.8%, with Ficus elastica (rubber fig) causing the greatest canopy cooling.
机译:该研究评估了植物性状和底物水分对四种草药和四个灌木的热性能的影响,这些灌木是垂直绿化系统(VGSS)中最常用的种类,在一年内,潮湿的亚热带香港。阳光阳光降低的阴压降低与冠层覆盖率和叶面积指数(LAI)显着相关,但没有每日蒸散(ET)。这表明VGSS的阴影效果与冠层覆盖率和赖有关,比ET冷却更突出。底物水分,等温度之间缺乏显着相关性表明衬底水分和ET没有显着增强VGS的冠层冷却。衬底湿度明显在阳光阳光下冷却基板,并在雨天上温热基板,这显着影响了基底热行为,但对冠层气温效果较小。使用VGSS与八种常见的植物物种在建筑包络上减少稳态导热18.7-39.8%,用榕胶(橡胶图),导致冠层最大冷却。

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