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Comparison on the Horizontal Behaviors of Lattice-Shaped Diaphragm Wall and Pile Group under Static and Seismic Loads

机译:静态和地震荷载晶格形隔膜墙和桩基水平行为的比较

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摘要

Lattice-shaped diaphragm wall (hereafter referring to LSDW) is a new type of bridge foundation, and the relevant investigation on its horizontal behaviors is scant. This paper is devoted to the numerical study of the comparison on the static and seismic responses of LSDW and pile group under similar material quantity in soft soil. It can be found that the horizontal bearing capacity of LSDW is considerably larger than that of pile group, and the deformation pattern of LSDW basically appears to be an overall toppling while pile group clearly shows a local bending deformation pattern during the static loading process. The acceleration response and the acceleration amplification effects of LSDW are slightly greater than that of pile group due to the existing of soil core and the difference on the ability of energy dissipation. The horizontal displacement response of pile group is close to that of LSDW at first and becomes stronger than that of LSDW due to the generation of plastic soil deformation near the pile-soil interface at last. The pile body may be broken in larger potential than LSDW especially when its horizontal displacement is notable. Compared with pile group, LSDW can be a good option for being served as a lateral bearing or an earthquake-proof foundation in soft soil.
机译:格子形隔膜墙(以下提及LSDW)是一种新型的桥梁基础,对其水平行为的相关调查是狭窄的。本文致力于软土类似材料量下LSDW和桩基静态和地震反应比较的数值研究。可以发现,LSDW的水平承载力远大于桩基组的水平承载能力,并且LSDW的变形图案基本上似乎是整体浇推,而桩基清楚地显示静态加载过程中的局部弯曲变形图案。由于土壤核心的存在,LSDW的加速度响应和加速扩增效应略大于桩基的施加效应和能量耗散能力的差异。桩基的水平位移响应首先接近LSDW的靠近LSDW,而不是LSDW,由于桩土界面附近的塑料土壤变形导致LSDW。桩体可能比LSDW更大的电位被打破,特别是当其水平位移是值得注意的时。与桩基相比,LSDW可以是侧向轴承的良好选择或软土中的防震基础。

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