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A damage-based numerical manifold approach to crack propagation in rocks

机译:基于损伤的数值歧管方法在岩石中裂纹传播

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摘要

A damaged-based numerical manifold method is proposed in this paper to investigate the micro- and macro-mechanical properties of rocks. This model accounts for material heterogeneity and local material degradation using an exponential material softening law. The Mohr-Coulomb criterion with a tension cut-off is chosen as the strength criterion to capture the rock damage and fracture modes. Once the induced tensile or compressive stress in an element fulfills the criterion, this element will be damaged and a crack will initiate from the centroid of this damaged element to the centroid of its adjacent damaged manifold element. To verify the proposed damage-based numerical manifold method (NMM), a series of benchmark tests are conducted and the results are compared with the numerical manifold method incorporated with a Mohr-Coulomb criterion-based fracturing algorithm to simulate the progressive failure. The simulated results are consistent with the analytical solutions, and the advantages and disadvantages of two methods are compared and analyzed. Numerical results indicate that the proposed damage-based numerical manifold method can capture the process of crack initiation and propagation, and this method is an effective and reliable approach for modelling cracking behavior of rocks.
机译:本文提出了一种基于损坏的数值歧管方法,以研究岩石的微观和宏观力学性能。这种模型考虑了使用指数材料软化法的材料异质性和局部物质降解。选择带有张力切断的MoHR-Coulomb标准作为强度标准,以捕获岩石损伤和裂缝模式。一旦元素中的诱导的拉伸或压缩应力满足标准,该元件将被损坏,并且裂缝将从该受损元素的质心引发到其相邻受损歧管元件的质心。为了验证所提出的基于损伤的数值歧管方法(NMM),进行了一系列基准测试,并将结果与​​包含基于MoHR-Coulomb标准的压裂算法的数值歧管方法进行比较,以模拟逐行故障。模拟结果与分析解决方案一致,比较和分析两种方法的优点和缺点。数值结果表明,所提出的基于损伤的数值歧管方法可以捕获裂纹启动和传播的过程,该方法是一种有效且可靠的方法,用于建模岩石的开裂行为。

著录项

  • 来源
    《Engineering analysis with boundary elements》 |2020年第8期|76-88|共13页
  • 作者单位

    Center for Rock Instability and Seismicity Research Northeastern University Shenyang 110819 China Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines Northeastern University Shenyang Liaoning 110819 China;

    Center for Rock Instability and Seismicity Research Northeastern University Shenyang 110819 China Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines Northeastern University Shenyang Liaoning 110819 China;

    Center for Rock Instability and Seismicity Research Northeastern University Shenyang 110819 China Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines Northeastern University Shenyang Liaoning 110819 China;

    Geotechnical Institute TU Bergakademie Freiberg Gustav-Zeuner-Str. 1 09596 Freiberg Germany;

    Center for Rock Instability and Seismicity Research Northeastern University Shenyang 110819 China Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines Northeastern University Shenyang Liaoning 110819 China;

    Center for Rock Instability and Seismicity Research Northeastern University Shenyang 110819 China Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines Northeastern University Shenyang Liaoning 110819 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Numerical manifold method; Rock failure; Crack initiation criterion; Crack evolution technique; Numerical simulation;

    机译:数值歧管方法;摇滚失败;裂缝启动标准;裂缝演化技术;数值模拟;

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