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Modeling rock failure using the numerical manifold method followed by the discontinuous deformation analysis

机译:使用数值流形方法对岩石破坏进行建模,然后进行不连续变形分析

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摘要

A complete rock failure process usually involves opening/sliding of preexisting discontinuities as well as fracturing in intact rock bridges to form persistent failure surfaces and subsequent motions of the generated rock blocks.The recently developed numerical manifold method (NMM)has potential for modelling such a complete failure process.However,the NMM suffers one limitation,i.e.,unexpected material domain area change occurs in rotation modelling.This problem can not be easily solved because the rigid body rotation is not represented explicitly in the NMM.The discontinuous deformation analysis (DDA) is specially developed for modelling discrete block systems.The rotationinduced material area change in the DDA modelling can be avoided conveniently because the rigid body rotation is represented in an explicit form.In this paper,a transition technique is proposed and implemented to convert a NMM modelling to a DDA modelling so as to simulate a complete rock failure process entirely by means of the two methods,in which the NMM is adopted to model the early fracturing as well as the transition from continua to discontinua,while the DDA is adopted to model the subsequent motion of the generated rock blocks.Such a numerical approach also improves the simulation efficiency greatly as compared with a complete NMM modelling approach.The fracturing of a rock slab with pre-existing non-persistent joints located on a slope crest and the induced rockfall process are simulated.The validity of the modelling transition from the NMM to the DDA is verified and the applicability of the proposed numerical approach is investigated.
机译:完整的岩石破坏过程通常包括打开/滑动先前存在的不连续性以及在完整的岩石桥梁中破裂以形成持久的破坏面以及生成的岩石块的后续运动。完整的破坏过程。然而,NMM受到一个局限性,即在旋转建模中发生了意外的材料区域面积变化。由于在NMM中未明确表示刚体旋转,因此无法轻松解决此问题。不连续变形分析(DDA) )是专门为建模离散块系统而开发的。由于刚体旋转以明确的形式表示,因此可以方便地避免DDA建模中旋转引起的材料面积变化。本文提出并实现了一种转换技术来转换NMM建模为DDA建模,以便完全通过以下方式模拟完整的岩石破坏过程这两种方法的手段是采用NMM来模拟早期裂缝以及从连续性到不连续性的过渡,而DDA则用于模拟生成的岩块的后续运动。这样的数值方法也改善了与完整的NMM建模方法相比,模拟效率大大提高。模拟了位于斜坡上的已有非永久性节理的岩板的破裂和诱发的落石过程。验证了DDA,并研究了所提出的数值方法的适用性。

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  • 来源
    《力学学报:英文版》 |2012年第003期|760-773|共14页
  • 作者单位

    School of Manufacturing Science and Engineering,Southwest University of Science and Technology,621010 Mianyang, China;

    School of Civil and Environmental Engineering,Nanyang Technological University,639798 Singapore, Singapore;

    School of Civil and Environmental Engineering,Nanyang Technological University,639798 Singapore, Singapore;

    College of Civil Engineering and Architecture,Zhejiang University, 310058 Hangzhou, China;

    School of Civil and Environmental Engineering,Nanyang Technological University,639798 Singapore, Singapore;

    School of Civil and Resource Engineering,University of Western Australia,35 Stirling Highway, Crawley WA 6009, Australia;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
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