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Innovative reinforced soil structures for high walls and slopes combining polymeric and metallic reinforcements

机译:用于聚合物和金属增强件的高壁和斜坡的创新增强土壤结构

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The aim of the paper is to describe the main advantages of using innovative engineered systems to build reinforced soil structures compared to traditional ones. In particular the paper refers to "hybrid" systems which combine planar polymeric reinforcements (geogrids) and steel wire mesh units in order to build high MSE walls (inclination ≥ 70°, up to almost 90°) or slopes (inclination < 70°). Both the components act as reinforcements and as stabilizing elements. Geogrids are considered to work as primary reinforcements since they guarantee the overall and compound internal stability of the structure. Whereas the wire mesh units are considered a secondary reinforcement providing the local stability at the facing, ensuring that no local mechanism of direct sliding, pull-out or rotational failure occurs. Results on existing structures indicate that, as structures achieve relevant heights (above 10 m), there is a large potential for cost effectiveness in using wire mesh and grids combined, in place of a 100% geogrids or a 100% steel mesh reinforcement solution only [1][2].Very high hybrid structures have been built all over the world following the mentioned approach. With this paper, three relevant case histories are presented. Firstly, a 80 m high reinforced soil hybrid structure built as retaining structure for a new airport construction in India. Secondly, a 40 m high reinforced soil hybrid structure, built as support for the construction of a highway in Albania. Thirdly, a reinforced soil hybrid structure, up to 16 m high, built as support for heavy tanks of an oil refinery in Turkey, which has been recently fully instrumented.
机译:本文的目的是描述使用创新的工程系统建设加筋土结构,相比于传统的人的主要优点。特别地,纸是指“混合”系统,其结合平面聚合物增强材料(土工格栅)和钢丝网单元,以(倾斜≥70℃,高达约90°)构建高MSE壁或斜坡(倾斜<70°) 。两个部件作为增强材料和作为稳定化元素。因为它们保证了结构的整体和化合物内部稳定土工格栅被认为工作作为主要加强件。而丝网单元被认为是次要加强提供在面向所述本地稳定性,确保直接滑动,拉出或旋转失败的没有本地机制发生。现有结构的结果表明,随着结构实现相关的高度(10米以上),有使用金属丝网进行成本效益一个大的电势和网格相结合,以代替100%的土工格栅或100%的钢丝网增强溶液仅[1] [2]。非常高的混合结构已建成世界各地所提到的方法如下。有了这个文件,三个相关的历史案例介绍。首先,80米高的钢筋建成围护结构新机场建设在印度土混合结构。其次,高40米加筋土混合结构,建成了在阿尔巴尼亚公路建设的支持。第三,加筋土混合结构,高达16米,高建作为一个炼油厂在土耳其,最近已经完全仪表的重型坦克的支持。

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