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Phase-field fracture modelling of crack nucleation and propagation in porous rock

机译:多孔岩石裂纹成核和繁殖的相场骨折建模

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摘要

In this work, we suggest a modified phase-field model for simulating the evolution of mixed mode fractures and compressive driven fractures in porous artificial rocks and Neapolitan Fine Grained Tuff. The numerical model has been calibrated using experimental observations of rock samples with a single saw cut under uniaxial plane strain compression. For the purpose of validation, results from the numerical model are compared to Meuwissen samples with different angles of rock bridge inclination subjected to uni-axial compression. The simulated results are compared to experimental data, both qualitatively and quantitatively. It is shown that the proposed model is able to capture the emergence of shear cracks between the notches observed in the Neapolitan Fine Grained Tuff samples as well as the propagation pattern of cracks driven by compressive stresses observed in the artificial rock samples. Additionally, the typical types of complex crack patterns observed in experimental tests are successfully reproduced, as well as the critical loads.
机译:在这项工作中,我们建议模拟混合模式裂缝和压缩驱动骨折的变化的改进的阶段 - 现场模型,并在多孔人工岩石中和Neapolitan细粒颗粒中的凝固。使用岩石样品的实验观察校准了数值模型,在单轴平面菌株压缩下具有单锯切割的岩石样品。出于验证的目的,与数值模型的结果与具有经受单轴压缩的不同岩石桥倾斜角度的MeuWissen样品进行比较。将模拟结果与实质性和定量的实验数据进行比较。结果表明,所提出的模型能够捕获在由人工岩石样品中观察到的压缩应力驱动的凹口之间观察到的凹口之间的剪切裂纹的出现。另外,成功地再现了在实验测试中观察到的典型类型的复杂裂纹图案,以及临界负载。

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