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Effective-stress seismic analysis of a gravity multi-block quay wall

机译:重力多砌块码头墙的有效应力地震分析

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The seismic performance of an existing gravity quay wall consisting of concrete blocks is investigated using effective stress analysis. The study focuses on the effect of the uncertainty associated with the spatial variability of the material properties in the foundation and backfill zones on the horizontal displacements, settlements and rotations of the wall as well as of porewater pressure behind the wall. A modification of the comprehensive generalized plasticity Pastor-Zienkiewicz constitutive model is used for modelling the cyclic behavior of the sandy gravel and rockfill. Four different numerical models are considered in an extensive parametric study consisting of 180 analyses. The results show that, for constant average relative density, the effects of its spatial variability are smaller than the effects of the frequency characteristics of the earthquake excitation. Moreover, it is shown that a foundation of high relative density may decrease significantly settlements and rotation of the wall, but some reduced horizontal displacements caused partly by block-to-block sliding may still take place. Excess porewater pressures immediately behind the wall are mostly negative, increasing the soil resistance.
机译:使用有效应力分析研究了由混凝土砌块组成的现有重力码头墙的抗震性能。这项研究的重点是与基础和回填区中材料特性的空间变异性有关的不确定性对壁的水平位移,沉降和旋转以及壁后孔隙水压力的影响。综合广义可塑性Pastor-Zienkiewicz本构模型的修改用于建模沙砾和堆石的循环行为。在由180个分析组成的广泛参数研究中,考虑了四个不同的数值模型。结果表明,对于恒定的平均相对密度,其空间变异性的影响要小于地震激励频率特性的影响。而且,已经表明,较高的相对密度的基础可以显着地减少壁的沉降和旋转,但是仍然可能发生部分由块对块的滑动引起的水平位移的减小。紧靠墙后的孔隙水压力大多为负值,从而增加了土壤阻力。

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