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Three-dimensional analysis of geosynthetic-encased granular columns for liquefaction mitigation

机译:用土工合成材料包裹的粒状柱用于减轻液化的三维分析

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摘要

Extensive numerical and experimental studies have been conducted to investigate the behavior of soft ground improved with geosynthetic-encased stone columns (ESCs). However, almost no studies have been performed to evaluate the use of ESC in mitigating the liquefaction hazard of saturated sand strata. For this purpose, three-dimensional nonlinear finite element (FE) analyses using the open-source computational platform OpenSees was performed to evaluate the mitigation of mildly sloping saturated cohesionless strata improved with the ESCs. A systematic parametric study was conducted to investigate the potential influence of geosynthetic/encasement length (L-enc), soft clay interlayer, and ground motion characteristics on improved efficiency. ESC remediation in various types of sand strata is also addressed. In addition, the effect of ground slope angle on the deployed remediation is discussed. Generally, ESC remediation was observed to be effective in reducing lateral deformation of the sand strata. It was found that improved efficiency also seemed to be definitely influenced by the geosynthetic/encasement length L-enc, the various types of sand strata, the thickness of the soft clay interlayers, and ground motion characteristics. Overall, ESC remediation may be used to achieve a reliable solution through the provided approaches.
机译:已经进行了广泛的数值和实验研究,以研究用土工合成材料包裹的石柱(ESC)改善的软土地基的性能。但是,几乎没有进行评估ESC在减轻饱和砂岩层液化危害方面的研究。为此,使用开源计算平台OpenSees进行了三维非线性有限元(FE)分析,以评估通过ESC改善的缓坡饱和无粘性地层的缓解效果。进行了系统的参数研究,以研究土工合成/包裹长度(L-enc),软粘土夹层和地面运动特性对提高效率的潜在影响。还讨论了各种类型砂层中的ESC修复。此外,还讨论了地面倾斜角度对部署的修复措施的影响。通常,观察到ESC修复可有效减少砂层的横向变形。发现提高的效率似乎也受到土工合成/包裹长度L-enc,各种类型的砂岩层,软粘土夹层厚度和地震动特性的肯定影响。总体而言,ESC补救措施可用于通过提供的方法来实现可靠的解决方案。

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