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Brittle anisotropic fracture propagation in quartz sandstone: insights from phase-field simulations

机译:石英砂岩中的脆性各向异性裂缝繁殖:相位仿真的见解

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摘要

We developed a generalized multiphase-field modeling framework for addressing the problem of brittle fracture propagation in quartz sandstones at microscopic length scale. Within this numerical approach, the grain boundaries and crack surfaces are modeled as diffuse interfaces. The two novel aspects of the model are the formulations of (Ⅰ) anisotropic crack resistance in order to account for preferential cleavage planes within each randomly oriented quartz grain and (Ⅱ) reduced interfacial crack resistance for incorporating lower fracture toughness along the grain boundaries that might result in intergranular crack propagation. The presented model is capable of simulating the competition between inter- and transgranular modes of fracturing based on the nature of grain boundaries, while exhibiting preferred fracturing directions within each grain. In the full parameter space, the model can serve as a powerful tool to investigate the complicated fracturing processes in heterogeneous polycrystalline rocks comprising of grains of distinct elastic properties, cleavage planes, and grain boundary attributes. We demonstrate the performance of the model through the representative numerical examples.
机译:我们开发了一种广义的多相场建模框架,用于解决微观长度尺度的石英砂岩中脆性断裂繁殖问题。在该数值方法中,晶粒边界和裂缝表面被建模为漫反射界面。该模型的两种新方面是(Ⅰ)各向异性裂纹抗性的制剂,以便考虑每个随机取向的石英晶粒内的优先切割平面,(Ⅱ)降低沿着可能的晶界较低的骨折韧性降低骨折韧性导致晶间裂纹传播。该模型能够模拟基于晶界性质的压裂间和晶状体的竞争,同时在每个谷物内显示出优选的压裂方向。在完整参数空间中,该模型可以用作探讨异质多晶岩石中的复杂裂缝过程的强力工具,该岩石包含不同的弹性性质,切割平面和晶粒边界属性的晶粒。我们通过代表数值示例展示模型的性能。

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  • 来源
    《Computational Geosciences》 |2020年第3期|1361-1376|共16页
  • 作者单位

    Institute for Applied Materials (IAM-CMS) Karlsruhe Institute of Technology Strasse am Forum 7 Karlsruhe 76131 Germany;

    Institute for Applied Materials (IAM-CMS) Karlsruhe Institute of Technology Strasse am Forum 7 Karlsruhe 76131 Germany;

    Institute for Applied Materials (IAM-CMS) Karlsruhe Institute of Technology Strasse am Forum 7 Karlsruhe 76131 Germany;

    Institute for Applied Materials (IAM-CMS) Karlsruhe Institute of Technology Strasse am Forum 7 Karlsruhe 76131 Germany Institute of Digital Materials Science (IDM) Karlsruhe University of Applied Sciences Moltkestrasse 30 Karlsruhe 76133 Germany;

    Institute for Applied Materials (IAM-CMS) Karlsruhe Institute of Technology Strasse am Forum 7 Karlsruhe 76131 Germany Institute of Digital Materials Science (IDM) Karlsruhe University of Applied Sciences Moltkestrasse 30 Karlsruhe 76133 Germany;

    Institute for Applied Materials (IAM-CMS) Karlsruhe Institute of Technology Strasse am Forum 7 Karlsruhe 76131 Germany Institute of Digital Materials Science (IDM) Karlsruhe University of Applied Sciences Moltkestrasse 30 Karlsruhe 76133 Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Brittle fracture; Phase-field modeling; Multiphase systems; Quartz sandstone; Anisotropic crack resistance; Interfacial crack resistance;

    机译:脆性骨折;相场建模;多相系统;石英砂岩;各向异性抗裂性;界面抗裂性;

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