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Effect of reinforcement form on the bearing capacity of square footings on sand

机译:补强形式对方底砂承载力的影响

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This paper presents the results of laboratory model loading tests and numerical studies carried out on square footings supported on geosynthetic reinforced sand beds. The relative performance of different forms of geosynthetic reinforcement (i.e. geocell, planar layers and randomly distributed mesh elements) in foundation beds is compared; using same quantity of reinforcement in each test. A biaxial geogrid and a geonet are used for reinforcing the sand beds. Geonet is used in two forms of reinforcement, viz. planar layers and geocell, while the biaxial geogrid was used in three forms of reinforcement, viz. planar layers, geocell and randomly distributed mesh elements. Laboratory load tests on unreinforced and reinforced footings are simulated in a numerical model and the results are analyzed to understand the distribution of displacements and stresses below the footing better. Both the experimental and numerical studies demonstrated that the geocell is the most advantageous form of soil reinforcement technique of those investigated, provided there is no rupture of the material during loading. Geogrid used in the form of randomly distributed mesh elements is found to be inferior to the other two forms. Some significant observations on the difference in reinforcement mechanism for different forms of reinforcement are presented in this paper.
机译:本文介绍了在土工合成材料加筋砂层支撑的方脚上进行的实验室模型载荷试验和数值研究的结果。比较了基础形式中不同形式的土工合成材料(即土工格室,平面层和随机分布的网格单元)的相对性能;在每个测试中使用相同数量的钢筋。双轴土工格栅和土工网用于加固沙床。土工网有两种加固形式,即加固。平面层和土工格室,而双轴土工格栅则以三种增强形式使用,即。平面层,土工格室和随机分布的网格单元。在数值模型中模拟了未加固脚和加固脚的实验室载荷测试,并对结果进行了分析,以更好地了解脚下方的位移和应力分布。实验和数值研究均表明,只要在加载过程中材料不破裂,土工格室是被研究土壤加固技术最有利的形式。发现以随机分布的网格单元形式使用的土工格栅不如其他两种形式。本文就不同形式的钢筋在钢筋机理上的差异提出了一些重要的看法。

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