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SPH-DEM simulations of saturated granular soils liquefaction incorporating particles of irregular shape

机译:饱和粒状土壤SPH-DEM模拟液化不规则形状颗粒

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A coupled smoothed particle hydrodynamics (SPH) and discrete element method (DEM) scheme is presented herein to investigate liquefaction of saturated granular deposits during strong seismic ground motions. Irregular-shaped solid particles in the form of polyhedral blocks are utilized to represent soil grains using DEM. In SPH, the fluid domain is discretized into distinct particles carrying local properties of the fluid. Therefore, the presented approach is a fully particle-based technique ideal for handling free-surface and moving boundary problems. The phase coupling is achieved through local averaging techniques and well-established semi-empirical relations quantifying fluid-particle interaction. Level and mildly sloped deposits were subjected to seismic ground motions introduced into the system through the base wall. The results of the performed simulations suggest that both deposits liquefied during strong base excitation due to the contraction of pore spaces leading to large increases in the excess pore fluid pressure that in turn results in significant loss of interparticle contacts and degradation of soil strength and stiffness. In addition, the sloping deposit experienced large lateral displacements, especially, at the shallow soil layers which completely liquefied during the seismic loading.
机译:本文提出了一种耦合平滑的粒子流体动力学(SPH)和离散元件方法(DEM)方案,以研究强烈地震研磨过程中饱和颗粒沉积物的液化。多面块形式的不规则形状的固体颗粒用于使用DEM表示土壤。在SPH中,流体结构域被离散化为携带流体局部性质的不同颗粒。因此,所提出的方法是一种基于完全粒子的技术,非常适合处理自由表面和移动边界问题。通过局部平均技术和确定流体颗粒相互作用的良好的半经验关系来实现相位耦合。通过底壁对水平和温和地倾斜的沉积物进行地震地面运动。所进行模拟的结果表明,由于孔隙空间的收缩导致孔隙空间的收缩导致孔隙流体压力的收缩而液化的沉积物液化在强大的基础激励中,从而导致颗粒间接触的显着损失和土壤强度和刚度的降解。此外,倾斜沉积物经历了大的横向位移,特别是在浅层土层处,在地震载荷期间完全液化的浅层土层。

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