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Solid-liquid coupled material point method for simulation of ground collapse with fluidization

机译:用于流化的地面塌陷模拟的固液耦合材料点法

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摘要

An improved version of the solid-liquid coupled material point method (MPM) is proposed to simulate ground collapses with fluidization involving transition processes from soil structures to flowing mixture. A water-saturated soil is assumed based on porous media theory, and the physical quantities of the soil and water phases are assigned to two separate sets of particles (material points). The main contribution of this study is the introduction of the fractional step projection method for the time discretization of the momentum equation of the water phase on the assumption of incompressibility. Thanks to this, the proposed solid-liquid coupled MPM is capable of suppressing the pressure oscillations caused by the weak incompressibility of water, which is commonly assumed in the previous studies, and of representing the wide range of behavior of the soil-water mixture at relatively low computational cost. Also, B-spline basis functions are utilized for the spatial discretization to suppress the cell-crossing errors caused by particles crossing element (cell) boundaries. Several numerical tests are conducted to examine the performance of the proposed method that inherits the beneficial features of MPM and demonstrate the capability of reproducing a model experiment of wave collision to sandpile that exhibits the water flow-induced fluidization process of soil involving scouring, transportation and sedimentation.
机译:提出了一种改进的固体耦合材料点法(MPM)的版本,以模拟涉及从土壤结构转变为流动混合物的流化的研磨坍塌。基于多孔介质理论假设水饱和土壤,并将土壤和水相的物理量分配到两组单独的颗粒(材料点)。本研究的主要贡献是引入分数步骤投影方法,以了解水相的动量方程的时间,以对不可压缩性的假设。如此,所提出的固液耦合MPM能够抑制由水的弱不可压制性引起的压力振荡,这在先前的研究中通常是假设的,并且代表土壤 - 水混合物的广泛行为计算成本相对较低。此外,B样条基函数用于空间离散化以抑制由粒子交叉元件(小区)边界引起的细胞交叉误差。进行了几个数值测试以检查提出的方法的性能,其继承了MPM的有益特征,并证明了在涉及涉及冲洗,运输和运输和涉及污水的土壤的流化流化过程中再现波碰撞模型试验的能力。沉降。

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