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Seismic response of shallow foundations over liquefiable soils improved by deep soil mixing columns

机译:深层土搅拌桩改善了液化土上浅层地基的地震反应

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摘要

There are limited information on how an artificially non-liquefiable soil layer created by ground improvement beneath shallow foundations can help the reduction of liquefaction induced foundation settlements and the deterrence of bearing capacity failure effectively. This is addressed herein, numerically through a three-dimensional finite difference model using FLAC(3D). The validity of the developed model was evaluated by comparing the results obtained from the model with the results of numerical studies and experimental centrifuge tests available in the literature. Using the validated model, the seismic response of a shallow foundation including bearing capacity and settlement was evaluated parametrically over a single DSM column in terms of its diameter and depth and also DSM group columns in terms of the diameter of columns and their center-to-center distance. Afterward, the influence of shallow foundation characteristic parameters was evaluated including thickness, width and embedded depth on the seismic response of shallow foundations over liquefiable soils improved by DSM columns. The obtained results can be used in practical engineering applications and provide new insight into the seismic performance of shallow foundations with DSM columns located over liquefiable soils.
机译:由浅层基础下面的地面改良所产生的人工非液化土壤层如何有效地减少液化引起的基础沉降以及对承载力破坏的威慑作用,目前尚缺乏足够的信息。本文通过使用FLAC(3D)的三维有限差分模型在数值上解决了这一问题。通过比较从模型获得的结果与文献中的数值研究和实验性离心试验的结果,来评估开发模型的有效性。使用经过验证的模型,在单个DSM立柱的直径和深度方面参数化评估浅层基础的地震响应,包括承载力和沉降,并且在立柱直径和中心至中心的参数范围内对DSM组立柱进行参数化评估。中心距离。然后,评估了浅层地基特征参数(包括厚度,宽度和埋深)对浅层地基在DSM柱改良后可液化土壤上地震响应的影响。所得结果可用于实际工程应用中,并为位于液化土壤上的DSM柱对浅层基础的抗震性能提供新的见解。

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