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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Discrete element method for modelling solid and particulate materials
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Discrete element method for modelling solid and particulate materials

机译:固体和颗粒材料建模的离散元方法

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The discrete element method (DEM) is developed in this study as a general and robust technique for unified two-dimensional modelling of the mechanical behaviour of solid and particulate materials, including the transition from solid phase to particulate phase. Inter-element parameters (contact stiffnesses and failure criteria) are theoretically established as functions of element size and commonly accepted material parameters including Young's modulus, Poisson's ratio, ultimate tensile strength, and fracture toughness. A main feature of such an approach is that it promises to provide convergence with refinement of a DEM discretization. Regarding contact failure, an energy criterion based on the material's ultimate tensile strength and fracture toughness is developed to limit the maximum contact forces and inter-element relative displacement. This paper also addresses the issue of numerical stability in DEM computations and provides a theoretical method for the determination of a stable time-step. The method developed herein is validated by modelling several test problems having analytic solutions and results show that indeed convergence is obtained. Moreover, a very good agreement with the theoretical results is obtained in both elastic behaviour and fracture. An example application of the method to high-speed penetration of a concrete beam is also given. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:离散元素法(DEM)是在这项研究中开发的,它是对固体和颗粒材料的力学行为进行统一二维建模的通用且鲁棒的技术,包括从固相到颗粒相的转变。理论上,将单元间参数(接触刚度和破坏准则)确定为单元尺寸和常用材料参数(包括杨氏模量,泊松比,极限抗拉强度和断裂韧性)的函数。这种方法的主要特征是,它有望通过改进DEM离散化来提供收敛。关于接触失效,开发了一种基于材料极限抗拉强度和断裂韧性的能量准则,以限制最大接触力和元件间的相对位移。本文还解决了DEM计算中的数值稳定性问题,并提供了确定稳定时间步长的理论方法。本文开发的方法通过对具有解析解的几个测试问题进行建模来验证,结果表明确实可以收敛。此外,在弹性行为和断裂方面都与理论结果非常吻合。还举例说明了该方法在混凝土梁的高速穿入中的应用。版权所有(c)2006 John Wiley&Sons,Ltd.

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