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首页> 外文期刊>Soils and foundations >Study on the pore water pressure dissipation method as a liquefaction countermeasure using soil water coupled finite deformation analysis equipped with a macro-element method
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Study on the pore water pressure dissipation method as a liquefaction countermeasure using soil water coupled finite deformation analysis equipped with a macro-element method

机译:孔隙水压力消散法作为液化对策的研究-结合宏观单元法的土水耦合有限变形分析

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摘要

A numerical simulation of the pore water pressure dissipation method was performed using the GEOASIA soil water coupled finite deformation analysis code, which is capable of accounting for inertial forces, together with the elasto-plastic constitutive SYS Cam-clay model based on the soil skeleton structure concept, with the goal of quantitatively assessing the effects of this method as a countermeasure to liquefaction. At the same time, an effort was made to improve/enhance the calculation efficiency of the GEOASIA analysis code by incorporating a macro-element method, which up to this point has only been applied to consolidation problems. The main findings of this study are as follows: (1) the macro-element method is capable of yielding highly accurate approximations even for dynamic problems, (2) the method is capable of reproducing the suppression effect of the increase in pore water pressure associated with the pore water pressure dissipation method, even when a relatively coarse mesh is used, (3) the method is capable of reproducing the suppression effect of the decrease in effective stress due to the pore water pressure dissipation method, along with the resulting reduction in shear stiffness, lateral ground movement, and settlement and (4) it is possible to efficiently design the pore water pressure dissipation method with this method by first performing calculations using a 1-D mesh to determine the effective drain spacing prior to performing calculations using 2-D or 3-D meshes. (C) 2015 The Japanese Geotechnical Society. Production and hosting by Elsevier B.V. All rights reserved.
机译:使用能够考虑惯性力的GEOASIA土水耦合有限变形分析程序,以及基于土骨架结构的弹塑性本构SYS Cam-clay模型,对孔隙水压力耗散方法进行了数值模拟。概念,目的是定量评估此方法的效果,作为液化的对策。同时,通过合并宏元素方法,努力提高/增强了GEOASIA分析代码的计算效率,到目前为止,该方法仅应用于合并问题。这项研究的主要发现如下:(1)宏单元方法即使对于动力问题也能够产生高精度的近似值;(2)该方法能够再现与孔隙水压力有关的抑制作用使用孔隙水压力消散方法,即使使用相对较粗的网格,(3)该方法也能够再现由于孔隙水压力消散方法而导致的有效应力降低的抑制效果,以及由此产生的压降。剪切刚度,侧向地面运动和沉降,以及(4)通过使用一维网格首先执行计算以确定有效排水间距,然后再使用2维进行计算,可以使用该方法有效设计孔隙水压力消散方法。 -D或3-D网格。 (C)2015年日本岩土学会。 Elsevier B.V制作和托管。保留所有权利。

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