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Bearing capacity of strip footings supported on geocell-reinforced sand

机译:土工格室增强砂支撑的条形基础承载力

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This paper presents the results from laboratory-model tests on a strip footing supported by a sand bed reinforced with a geocell mattress. The parameters varied in the testing program include pattern of geocell formation, pocket size, height and width of geocell mattress, the depth to the top of geocell mattress, tensile stiffness of the geogrids used to fabricate geocell mattress and the relative density of the sand. With the provision of geocell reinforcement, failure was not observed even at a settlement equal to 50/100 of the footing width and a load as high as 8 times the ultimate bearing capacity of the unreinforced sand. Based on the model test results, the depth of placement and the dimensions of the geocell layer for mobilising maximum bearing capacity improvement have been determined. In addition to the tensile strength of reinforcement, the aperture size and orientation of ribs of the geogrid used to fabricate geocell mattress must be taken into account while evaluating its contribution to the improvement in the performance.
机译:本文介绍了实验室模型测试的结果,该测试在带底脚的底脚上进行了测试,这些底脚上装有geocell床垫。测试程序中变化的参数包括:土工格格形成的模式,口袋大小,土工格格床垫的高度和宽度,土工格格床垫顶部的深度,用于制造土工格格床垫的土工格栅的拉伸刚度以及沙子的相对密度。通过提供土工格室加固,即使沉降量等于基础宽度的50/100,且荷载高达未加固沙子的极限承载力的8倍,也未观察到破坏。根据模型测试结果,确定了动员最大承载能力的土工层深度和尺寸。除了增强的拉伸强度外,在评估其对性能改进的贡献时,还必须考虑用于制造土工格室床垫的土工格栅的孔径大小和肋骨的方向。

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