首页> 外文期刊>Rock Mechanics and Rock Engineering >Rate-Dependent Embedded Discontinuity Approach Incorporating Heterogeneity for Numerical Modeling of Rock Fracture
【24h】

Rate-Dependent Embedded Discontinuity Approach Incorporating Heterogeneity for Numerical Modeling of Rock Fracture

机译:含非均质性的速率相关嵌入式不连续性方法在岩石破裂数值模拟中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper, the embedded discontinuity approach is applied in finite element modeling of rock in compression and tension. For this end, a rate-dependent constitutive model based on (strong) embedded displacement discontinuity model is developed to describe the mode I, mode II and mixed mode fracture of rock. The constitutive model describes the bulk material as linear elastic until reaching the elastic limit. Beyond the elastic limit, the rate-dependent exponential softening law governs the evolution of the displacement jump. Rock heterogeneity is incorporated in the present approach by random description of the mineral texture of rock. Moreover, initial microcrack population always present in natural rocks is accounted for as randomly-oriented embedded discontinuities. In the numerical examples, the model properties are extensively studied in uniaxial compression. The effect of loading rate and confining pressure is also tested in the 2D (plane strain) numerical simulations. These simulations demonstrate that the model captures the salient features of rock in confined compression and uniaxial tension. The developed method has the computational efficiency of continuum plasticity models. However, it also has the advantage, over these models, of accounting for the orientation of introduced microcracks. This feature is crucial with respect to the fracture behavior of rock in compression as shown in this paper.
机译:本文将嵌入的不连续性方法应用于岩石在受压和受拉过程中的有限元建模。为此,开发了基于速率的本构模型,该模型基于(强)嵌入位移不连续性模型来描述岩石的模式I,模式II和混合模式裂缝。本构模型将块状材料描述为线性弹性,直到达到弹性极限为止。超出弹性极限,取决于速率的指数软化定律控制着位移跃变的演化。通过随机描述岩石的矿物质地,将岩石异质性纳入本方法。此外,天然岩石中始终存在的初始微裂纹种群被认为是随机定向的埋藏间断。在数值示例中,模型特性在单轴压缩中得到了广泛的研究。在二维(平面应变)数值模拟中还测试了加载速率和围压的影响。这些仿真表明,该模型在有限的压缩和单轴张力下捕获了岩石的显着特征。该方法具有连续可塑性模型的计算效率。但是,与这些模型相比,它还具有解决引入的微裂纹方向的优势。如本文所示,此功能对于压缩岩石的断裂行为至关重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号