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A Statistically Rigorous Approach to Experimental Design of Vertical Living Walls for Green Buildings

机译:一种统计严格的绿色建筑垂直生活墙体实验设计方法

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Living walls (LW) have been widely proposed as a form of green infrastructure to improve aesthetics, energy consumption, and microclimate in urban environments by adding densely-planted vegetation to the outside walls of buildings. Scientific studies using multiple treatments in a single LW face challenges due to the close physical proximity of different treatments, particularly the potential for plants above to influence those below. A study on a west-facing LW was undertaken to investigate 36 unique treatments in Adelaide, South Australia, for nine months. The LW comprised combinations of six native plant species, three soil substrates and two irrigation volumes. The LW consisted of 144 modular trays mounted on a wall in a 12 × 12 grid with four replicates of each treatment. The location of each treatment was designed to account for a cascading carry-over effect that may be present when one plant is placed above another. Carry-over effect of the model designed showed mixed results among the plant groups identified. It was also found that long-form plants can significantly shade smaller plants below them. Experimental research into the performance of plants in mixed species LW should consider the carry-over effect to account for this.
机译:生活墙(LW)已被广泛提出作为绿色基础设施的形式,以通过向建筑物的外墙添加浓密种植的植被来改善城市环境中的美学,能耗和微气密。由于不同治疗的密切物理接近,使用多种治疗的科学研究使用多种治疗面临的挑战,特别是上述植物影响以下植物的潜力。对西部LW的研究是在南澳大利亚南澳大利亚阿德莱德的36种独特治疗中进行了九个月。 LW包括六种天然植物种类,三种土壤基材和两种灌溉量的组合。 LW由安装在12×12栅格的墙壁上的144个模块化托盘组成,每种处理四个重复。设计各处理的位置,以解释当一个植物放在另一个植物上方时,可以存在的级联随身效应。在鉴定的植物组中设计的型号的续集效果显示。还发现,长型植物可以显着遮荫下方的植物。混合物种LW植物性能的实验研究应考虑随之而来的延续效应。

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