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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Penalty function method for combined finite-discrete element systems comprising large number of separate bodies
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Penalty function method for combined finite-discrete element systems comprising large number of separate bodies

机译:包含大量分离体的有限元组合系统的罚函数法

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摘要

Large-scale discrete element simulations, the combined finite-discrete element method, DDA as well as a whole range of related methods, involve contact of a large number of separate bodies. In the context of the combined finite-discrete element method, each of these bodies is represented by a single discrete element which is then discretized into finite elements. The combined finite-discrete element method thus also involves algorithms dealing with fracture and fragmentation of individual discrete elements which result in ever changing topology and size of the problem. All these require complex algorithmic procedures and significant computational resources, especially in terms of CPU time. In this context, it is also necessary to have an efficient and robust algorithm for handling mechanical contact. In this work, a contact algorithm based on the penalty function method and incorporating contact kinematics preserving energy balance, is proposed and implemented into the combined finite element code.
机译:大规模离散元模拟,有限元离散组合方法,DDA以及一系列相关方法,涉及到大量单独物体的接触。在组合有限元方法的背景下,这些实体中的每一个都由单个离散元素表示,然后离散为有限元。因此,组合的有限离散元素方法还涉及处理单个离散元素的断裂和破碎的算法,从而导致拓扑结构和问题大小不断变化。所有这些都需要复杂的算法过程和大量的计算资源,尤其是在CPU时间方面。在这种情况下,还必须有一个有效而健壮的算法来处理机械接触。在这项工作中,提出了一种基于罚函数法并结合了保持能量平衡的接触运动学的接触算法,并将其实现为组合有限元代码。

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