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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >An algorithm for continuum modeling of rocks with multiple embedded nonlinearly-compliant joints
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An algorithm for continuum modeling of rocks with multiple embedded nonlinearly-compliant joints

机译:具有多种嵌入式非线性关键词的岩石连续内建模的算法

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摘要

We present a numerical method for modeling the mechanical effects of nonlinearly-compliant joints in elasto-plastic media. The method uses a series of strain-rate and stress update algorithms to determine joint closure, slip, and solid stress within computational cells containing multiple "embedded" joints. This work facilitates efficient modeling of nonlinear wave propagation in large spatial domains containing a large number of joints that affect bulk mechanical properties. We implement the method within the massively parallel Lagrangian code GEODYN-L and provide verification and examples. We highlight the ability of our algorithms to capture joint interactions and multiple weakness planes within individual computational cells, as well as its computational efficiency. We also discuss the motivation for developing the proposed technique: to simulate large-scale wave propagation during the Source Physics Experiments (SPE), a series of underground explosions conducted at the Nevada National Security Site (NNSS).
机译:我们提出了一种用于建模弹性塑料介质中非线性柔顺关节的机械效果的数值方法。该方法使用一系列应变速率和应力更新算法来确定包含多个“嵌入式”关节的计算单元内的关节闭合,滑移和固体应力。这项工作有助于在包含大量影响体积机械性能的大量关节中的大型空间域中的非线性波传播的高效建模。我们在大规模平行拉格朗日代码Geodyn-L中实现该方法,并提供验证和示例。我们突出了算法捕获各个计算单元中的联合交互和多个弱点平面的能力,以及其计算效率。我们还讨论了开发所提出的技术的动机:在源物理实验(SPE)期间模拟大规模波传播,在内华达国家安全网站(NNSS)进行了一系列地下爆炸。

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