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Three-Dimensional Numerical Simulation on Triaxial Failure Mechanical Behavior of Rock-Like Specimen Containing Two Unparallel Fissures

机译:三维数值模拟岩石样标本的三轴失效力学行为,含有两个非平行裂缝的岩石样本

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摘要

A three-dimensional particle flow code (PFC3D) was used for a systematic numerical simulation of the strength failure and cracking behavior of rock-like material specimens containing two unparallel fissures under conventional triaxial compression. The micro-parameters of the parallel bond model were first calibrated using the laboratory results of intact specimens and then validated from the experimental results of pre-fissured specimens under triaxial compression. Numerically simulated stress-strain curves, strength and deformation parameters and macro-failure modes of pre-fissured specimens were all in good agreement with the experimental results. The relationship between stress and the micro-crack numbers was summarized. Crack initiation, propagation and coalescence process of pre-fissured specimens were analyzed in detail. Finally, horizontal and vertical cross sections of numerical specimens were derived from PFC3D. A detailed analysis to reveal the internal damage behavior of rock under triaxial compression was carried out. The experimental and simulated results are expected to improve the understanding of the strength failure and cracking behavior of fractured rock under triaxial compression.
机译:三维颗粒流量代码(PFC3D)用于系统的数值模拟,其强度破坏和含有两个在传统三轴压缩下的非平行裂缝的岩石状材料样本的开裂行为。首先使用完整标本的实验室结果校准并联粘合模型的微观参数,然后从三轴压缩下的预裂纹样品的实验结果验证。具有实验结果的数值模拟的应力 - 应变曲线,强度和变形参数和预裂纹样本的宏衰竭模式均匀一致。总结了应力与微裂纹数的关系。详细分析了预裂纹标本的裂纹启动,传播和聚结过程。最后,源自PFC3D的数值样本的水平和垂直横截面。对三轴压缩下岩石内部损伤行为进行了详细分析。预计实验和模拟结果预计在三轴压缩下改善了对裂缝岩体的强度失效和破裂行为的理解。

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