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首页> 外文期刊>Journal of Computing in Civil Engineering >Highly Stable Explicit Temporal Integration for Discrete Element Computations
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Highly Stable Explicit Temporal Integration for Discrete Element Computations

机译:离散元素计算的高度稳定的显式时间积分

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This paper presents the adaptation of a semi-implicit time integration scheme that has been reported in the literature and its implementation for use in discrete element methods (DEM). The computational efficiency of DEM methods is primarily associated with the selection of time increment sizes, as dictated by stability requirements, and other factors that depend on the particulars of the DEM implementation and the problems solved. The proposed time integration scheme and the associated DEM are developed for problems pertaining to rigid-particle interaction and interaction of elastic bodies that are modeled as a cluster of rigid interconnected particles. Verification studies that consider nonlinear problems demonstrate that the proposed algorithm is unconditionally stable and accurate even for large time step sizes and when applicable does not require any inversions of the system matrices. Assessment studies on the accuracy, stability, and computational efficiency of the method have been conducted and discussed. The implementation of the proposed method is discussed and demonstrated through a showcase problem. (C) 2014 American Society of Civil Engineers.
机译:本文介绍了文献中已报道的半隐式时间积分方案的改编及其在离散元素方法(DEM)中的实现。 DEM方法的计算效率主要取决于稳定性要求所决定的时间增量大小的选择,以及取决于DEM实现细节和所解决问题的其他因素。针对与刚性粒子相互作用和被建模为刚性互连粒子簇的弹性体相互作用有关的问题,开发了建议的时间积分方案和相关的DEM。考虑非线性问题的验证研究表明,即使对于较大的时间步长,该算法也是无条件稳定且准确的,并且在适用时不需要对系统矩阵进行任何求逆。对该方法的准确性,稳定性和计算效率进行了评估研究。通过展示问题讨论并演示了所提出方法的实现。 (C)2014年美国土木工程师学会。

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