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A saturated discrete particle model and characteristic-based SPH method in granular materials

机译:颗粒材料中的饱和离散颗粒模型和基于特征的SPH方法

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Based on the discrete particle model for solid-phase deformation of granular materials consisting of dry particulate assemblages, a discrete particle-continuum model for modelling the coupled hydro-mechanical behaviour in saturated granular materials is developed. The motion of the interstitial fluid is described by two parallel continuum schemes governed by the averaged incompressible N-S equations and Darcy's law, respectively, where the latter one can be regarded as a degraded case of the former. Owing to the merits in both Lagrangian and mesh-free characters, the characteristic-based smoothed particle hydrodynamics (SPH) method is proposed in this paper for modelling pore fluid flows relative to the deformed solid phase that is modelled as packed assemblages of interacting discrete particles. It is assumed that the formulation is Lagrangian with the co-ordinate system transferring with the movement of the solid particles. The assumed continuous fluid field is discretized into a finite set of Lagrangian (material) points with their number equal to that of solid particles situated in the computational domain. An explicit meshless scheme for granular materials with interstitial water is formulated. Numerical results illustrate the capability and performance of the present model in modelling the fluid-solid interaction and deformation in granular materials saturated with water.
机译:基于离散颗粒模型,该模型用于由干颗粒集合组成的颗粒材料的固相变形,建立了一个离散颗粒连续模型,用于对饱和颗粒材料中的流体力学行为进行建模。间隙液的运动由分别由平均不可压缩N-S方程和达西定律控制的两个并行连续体方案描述,其中后者可被视为前者的退化情况。鉴于拉格朗日和无网格特征的优点,本文提出了基于特征的平滑粒子流体动力学(SPH)方法,用于建模相对于变形固相的孔隙流体流,该固相被建模为相互作用离散颗粒的堆积组合。假定该配方是拉格朗日方程,其坐标系随固体颗粒的运动而转移。假定的连续流场被离散成有限个拉格朗日(材料)点集,其数量等于位于计算域中的固体粒子的数量。提出了一种用于间隙水的粒状材料的显式无网格方案。数值结果说明了本模型在水饱和的粒状材料中流固相互作用和变形建模方面的能力和性能。

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