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Geosynthetic-Reinforced Soil Structure Built to Restore Original Geometry of a 12 m High Slope After Failure Using Local Soil

机译:土工合成加筋土结构,以恢复原始几何在使用当地土壤失效后12米高的斜坡

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This paper presents a study case in which a geosynthetic-reinforced soil (GRS) structure was used to rebuild a 12 m high slope after its failure. The failed slope is located between the parking lot of a private company and a public school. Due to surrounding structures restrictions, this project required a solution with rapidity in execution. In addition, as a requirement established by its owner, this structure should recover the original geometry of the slope. Besides the importance regarding surrounding constructions, an interesting aspect of this study case relies on the versatility of geosynthetic materials. A woven geotextile was used as reinforcement. Five other geosynthetic materials were used in this study case. Facing comprised a geocell filled with local soil cover and grass mats, resulting in a green facing. A geonet was used to hold the grass mats in place before grass roots development. Regarding the drainage system, geocomposite drains and geopipes were installed to drain subsurface water. A nonwoven geotextile was used as filter in drainage trenches, which were placed near the structure toe. Additionally to the GRS structure, the lower portion of the slope was reinforced with soil nailing technique. The face of the nailed soil portion was covered with sandbags and shotcrete. It emphasizes the flexibility of GRS structures regarding their application with other technical options in Geotechnical Engineering. The economic aspect of this study case also deserves attention. It did not require soil transportation and other design and construction steps, e.g. concrete structures design and construction.
机译:本文介绍了一种研究案例,其中土工合成增强土壤(GRS)结构用于在失效后重建12米高的斜率。失败的坡度位于私营公司和公立学校的停车场之间。由于周围结构限制,该项目需要执行速度快速的解决方案。此外,作为其所有者建立的要求,这种结构应恢复斜坡的原始几何形状。除了关于周围结构的重要性,本研究案例的一个有趣方面依赖于地质合成材料的多功能性。使用编织的土工织物作为增强件。在本研究案例中使用了其他五种地质合成材料。面对填充着局部土壤覆盖物和草垫的地理蜂蜜,导致绿色面向绿色。在基层发育之前,使用了一个地理上的草地上的草地垫。关于排水系统,安装地球复合漏和地理垫以排出地下水。非织造土工织物用作排水沟中的过滤器,其置于结构脚趾附近。另外,在GRS结构上,斜坡的下部用土着钉技术加强。钉土壤部分的面孔被沙袋和吸尘器覆盖。它强调了GRS结构对岩土工程中其他技术选择的应用程序的灵活性。本研究案例的经济方面也值得关注。它不需要土壤运输和其他设计和施工步骤,例如,混凝土结构设计与施工。

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