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An experimental evaluation of the behavior of footings on geosynthetic-reinforced sand

机译:土工合成材料加筋地基行为的实验评估

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摘要

This research was performed to investigate the behavior of geosynthetic-reinforced sandy soil foundations and to study the effect of different parameters contributing to their performance using laboratory model tests. The parameters investigated in this study included top layer spacing, number of reinforcement layers, vertical spacing between layers, tensile modulus and type of geosynthetic reinforcement, embedment depth, and shape of footing. The effect of geosynthetic reinforcement on the vertical stress distribution in the sand and the strain distribution along the reinforcement were also investigated. The test results demonstrated the potential benefit of using geosynthetic-reinforced sand foundations. The test results also showed that the reinforcement configuration/layout has a very significant effect on the behavior of reinforced sand foundation. With two or more layers of reinforcement, the settlement can be reduced by 20% at all footing pressure levels. Sand reinforced by the composite of geogrid and geotextile performed better than those reinforced by geogrid or geotextile alone. The inclusion of reinforcement can redistribute the applied footing load to a more uniform pattern, hence reducing the stress concentration, which will result reduced settlement. Finally, the results of model tests were compared with the analytical solution developed by the authors in previous studies; and the analytical solution gave a good predication of the experimental results of footing on geosynthetic reinforced sand.
机译:进行这项研究是为了研究土工增强砂土基础的性能,并使用实验室模型测试来研究不同参数对其性能的影响。在这项研究中研究的参数包括顶层间距,增强层的数量,层之间的垂直间距,拉伸模量和土工合成材料增强的类型,包埋深度和基础形状。还研究了土工合成材料对砂土中垂直应力分布的影响以及沿增强作用的应变分布。测试结果证明了使用土工合成材料加筋的砂基础的潜在好处。测试结果还表明,加固构造/布局对加固砂基础的性能有非常显着的影响。使用两层或更多层加固,在所有基础压力水平下的沉降都可以减少20%。用土工格栅和土工织物的复合材料加固的沙土比仅用土工格栅或土工织物的加固的沙土表现更好。包含钢筋可以将施加的基础荷载重新分配到更均匀的样式,从而减少应力集中,这将导致沉降减少。最后,将模型测试的结果与作者在先前研究中开发的分析解决方案进行了比较。解析解为土工合成材料加筋砂立足的试验结果提供了良好的预测。

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