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含液颗粒材料液固耦合分析的离散颗粒模型及特征线SPH法
引用本文:楚锡华,李锡夔.含液颗粒材料液固耦合分析的离散颗粒模型及特征线SPH法[J].计算力学学报,2007,24(6):719-726.
作者姓名:楚锡华  李锡夔
作者单位:大连理工大学,工业装备结构分析国家重点实验室,辽宁,大连,116024
基金项目:国家自然科学基金(502780121027202719832010),国家973资助项目(2002CB412709)资助项目
摘    要:对含液颗粒材料流固耦合分析建议了一个基于离散颗粒模型与特征线SPH法的显式拉格朗日-欧拉无网格方案。在已有的用以模拟固体颗粒集合体的离散颗粒模型1]基础上,将颗粒间间隙内的流体模型化为连续介质,对其提出并推导了基于特征线的SPH法。数值例题显示了所建议方案在模拟颗粒材料与间隙流相互作用的能力和性能以及间隙流体对颗粒结构承载能力及变形的影响。

关 键 词:离散颗粒模型  光滑质点流体动力学  特征线  颗粒材料  流-固耦合
文章编号:1007-4708(2007)06-0719-08
收稿时间:2005-11-14
修稿时间:2007-04-03

A discrete particle model and characteristic based SPH method for fluid-solid interaction of granular materials filled with liquids
CHU Xi-hu,LI Xi-kui.A discrete particle model and characteristic based SPH method for fluid-solid interaction of granular materials filled with liquids[J].Chinese Journal of Computational Mechanics,2007,24(6):719-726.
Authors:CHU Xi-hu  LI Xi-kui
Abstract:In the frame of discrete particle model for modeling of granular materials,there exist two main types of mathematical models for modelling interstitial liquid,i.e.the discrete(liquid-bridge) and continuum models.The liquidbridge model is mainly used for low moisture content and is not able to model the fluid transport within a porous medium.To model fluid flow through a porous medium and its interaction with the solid grains of the medium,a continuum model should be employed.In this paper a coupled discrete particle-continuum model for wet granular materials is developed.The solid particles are described by discrete particle model,and the motion of the interstitial fluid phase and its interaction with the solid phase are described by continuum scheme governed by the averaged N-S equation.In light of SPH approach,the characteristic based SPH method is presented for numerical modeling of pore fluid flow.A numerical solution procedure based on discrete element method and characteristic based SPH for wet granular materials is formulated.Numerical results demonstrate the capability and performance of the proposed scheme in modeling the interaction and exhibit influences of interstitial fluid flow upon the loading capacity and deformation of the solid particle assembly.
Keywords:discrete particle method  smoothed particle hydrodynamics  characteristic line  granular materials  fluid-solid interaction
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