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COUPLING PARTICLE TO CONTINUUM REGIONS OF PARTICULATE MATERIALS

机译:耦合到特定材料的连续区域

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Following atomistic-continuum coupling methods for lattice-structured materials [1, 2], a method for coupling particle to continuum regions of particulate materials is presented. The particle region is modeled using particle mechanics and the discrete element method, whereas the continuum region is modeled using linear micropolar elasticity and the finite element method. The formulation for coupling particle and continuum degrees of freedom as well as partitioning kinetic and potential energies in the overlapping domain is presented. Details of the numerical implementation and numerical examples will follow in a forthcoming paper. The method is developed to model par-ticulate materials at their physical length scale (particle size) in regions of large relative particle motion in a computationally tractable manner.
机译:继原子-连续体耦合方法用于晶格结构的材料[1,2]之后,提出了一种将粒子耦合到颗粒材料的连续体区域的方法。使用粒子力学和离散元方法对粒子区域进行建模,而使用线性微极弹性和有限元方法对连续区域进行建模。提出了耦合颗粒和连续自由度以及在重叠域中分配动能和势能的公式。数值实现的详细信息和数值示例将在即将发表的论文中介绍。该方法被开发为以可计算的方式在较大的相对粒子运动区域中以其物理长度尺度(粒子尺寸)对微粒材料进行建模。

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