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Bearing capacity of square footings on geosynthetic reinforced sand

机译:土工合成材料增强砂上方脚的承载力

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摘要

The results from laboratory model tests and numerical simulations on square footings resting on sand are presented. Bearing capacity of footings on geosynthetic reinforced sand is evaluated and the effect of various reinforcement parameters like the type and tensile strength of geosynthetic material, amount of reinforcement, layout and configuration of geosynthetic layers below the footing on the bearing capacity improvement of the footings is studied through systematic model studies. A steel tank of size 900 × 900 × 600 mm is used for conducting model tests. Four types of grids, namely strong biaxial geogrid, weak biaxial geogrid, uniaxial geogrid and a geonet, each with different tensile strength, are used in the tests. Geosynthetic reinforcement is provided in the form of planar layers, varying the depth of reinforced zone below the footing, number of geosynthetic layers within the reinforced zone and the width of geosynthetic layers in different tests. Influence of all these parameters on the bearing capacity improvement of square footing and its settlement is studied by comparing with the test on unreinforced sand. Results show that the effective depth of reinforcement is twice the width of the footing and optimum spacing of geosynthetic layers is half the width of the footing. It is observed that the layout and configuration of reinforcement play a vital role in bearing capacity improvement rather than the tensile strength of the geosynthetic material. Experimental observations are supported by the findings from numerical analyses.
机译:给出了实验室模型测试的结果以及在沙滩上立足的数字模拟的结果。评估了基脚在土工合成纤维增强砂土上的承载力,研究了各种增强参数,例如土工合成材料的类型和抗拉强度,基脚下面的土工合成材料的加固量,布局和构型对基脚承载力提高的影响通过系统的模型研究。使用大小为900×900×600 mm的钢罐进行模型测试。试验中使用了四种类型的网格,即强双轴土工格栅,弱双轴土工格栅,单轴土工格栅和土工格栅,每种类型的格栅具有不同的抗张强度。土工合成材料增强层以平面层的形式提供,在不同的测试中,会改变基础以下的增强区域的深度,增强区内的土工合成层数以及土工合成层的宽度。通过与无筋砂的试验比较,研究了所有这些参数对方脚承载力改善及其沉降的影响。结果表明,有效的加固深度是基础宽度的两倍,而土工合成材料层的最佳间距是基础宽度的一半。可以看出,钢筋的布局和构型在提高承载力而不是土工合成材料的抗张强度方面起着至关重要的作用。数值分析的结果支持了实验观察。

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