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Soil-roots Strength Performance of Extensive Green Roof by Using Axonopus Compressus

机译:使用Axonopus Compress的土壤根系强度性能宽阔的绿色屋顶

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Green roof technology has been proven to provide potential environmental benefits including improved building thermal performance, removal of air pollution and reduced storm water runoff. Installation of green roof also involved soil element usage as a plant growth medium which creates several interactions between both strands. This study was carried out to investigate the soil-roots strength performance of green roof at different construction period up to 4 months. Axonopus compressus (pearl grass) was planted in a l'xl' test plot with a designated suitable soil medium. Direct shear test was conducted for each plot to determine the soil shear strength according to different construction period. In addition, some basic geotechnical testing also been carried out. The results showed that the shear strength of soil sample increased over different construction period of 1st, 2nd, 3rd and 4th month with average result 3.81 kPa, 5.55 kPa, 6.05 kPa and 6.48 kPa respectively. Shear strength of rooted soil samples was higher than the soil samples without roots (control sample). In conclusion, increment of soil-roots shear strength was due to root growth over the time. The soil-roots shear strength development of Axonopus compressus can be expressed in a linear equation as: y = 0.85 lx + 3.345, where y = shear stress and x = time.
机译:已被证明为绿色屋顶技术提供潜在的环境效益,包括改进的建筑物热性能,消除空气污染和降低雨水径流。绿色屋顶的安装也涉及土壤元素使用作为植物生长培养基,这在两条股之间产生了多种相互作用。进行本研究,以研究不同建筑期间的绿色屋顶的土壤根源性能长达4个月。 Axonopus Compressus(珍珠草)被种植在L'XL'试图中,具有指定的合适的土壤培养基。对每种曲线进行直接剪切试验,以根据不同的施工期确定土壤剪切强度。此外,还进行了一些基本的岩土工程测试。结果表明,土壤样品的剪切强度分别在不同的施工期内增加,平均结果为3.81kPa,5.55kPa,6.05 kPa和6.48kPa。生根土壤样品的剪切强度高于没有根的土壤样品(对照样品)。总之,土壤根部剪切强度的增量是由于随时的根生长。 Axonopus压缩的土壤根剪切强度发展可以以线性方程表示为:Y = 0.85LX + 3.345,其中Y =剪切应力和x =时间。

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