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Two-Phase Model for Nonlinear Dynamic Simulation of Reinforced Soil Walls Based on a Modified Pastor-Zienkiewicz-Chan Model for Granular Soil

机译:基于改进的Pastor-Zienkiewicz-Chan模型的粒状土的加筋土墙非线性动态仿真的两阶段模型

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A two-phase model is introduced that simulates the nonlinear dynamic behavior of a reinforced soil wall, incorporating a generalized plasticity soil model and an elastic perfectly plastic inclusion model. The two-phase model is an extension of homogenization methods developed using the virtual work theorem. It considers composite reinforced soil as the superposition of two mutually interacting continuous phases; the matrix and the reinforcement. The main advantages of the two-phase method are that layer-by-layer modeling is not needed, modifying the arrangement of inclusions is easy, and computation time decreases considerably. The Pastor-Zienkiewicz-Chan model has been specifically modified to improve its prediction of the ratcheting effect during cyclic loading of geosynthetic reinforced soil walls and was implemented for the behavior of the matrix phase. The proposed approach uses finite-difference code and was validated using simulations of reduced-scale reinforced soil walls subjected to seismic loading in shaking tables. Lateral displacement of the wall face from the two-phase model was compared with experimental values at different acceleration amplitudes. Investigation of the deformation patterns and potential failure surfaces in the two-phase models shows overturning deformation mode and formation of a bilinear wedge-shape zone that is consistent with the results of experiments. (C) 2015 American Society of Civil Engineers.
机译:引入了两阶段模型,该模型模拟了广义土塑性模型和弹性完全塑性夹杂模型,从而模拟了加筋土墙的非线性动力行为。两阶段模型是使用虚拟功定理开发的均质化方法的扩展。它把复合加筋土视为两个相互相互作用的连续相的叠加。矩阵和钢筋。两阶段方法的主要优点是不需要逐层建模,易于修改夹杂物的排列,并且计算时间大大减少。对Pastor-Zienkiewicz-Chan模型进行了专门修改,以改善其在土工合成加筋土墙的循环荷载过程中对棘轮效应的预测,并针对基质相的行为实施了该模型。所提出的方法使用了有限差分码,并通过在振动台上承受地震荷载的缩小比例的加筋土墙的模拟进行了验证。将两相模型中壁面的侧向位移与不同加速度振幅下的实验值进行了比较。对两相模型中变形模式和潜在破坏面的研究表明,倾覆变形模式和双线性楔形区域的形成与实验结果一致。 (C)2015年美国土木工程师学会。

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