基于能量演化的砂质泥岩裂纹扩展规律研究

    Study on crack propagation rule of sandy mudstone based on energy evolution

    • 摘要: 岩石作为工程建筑领域的基础材料,其裂纹扩展规律的研究对于确保工程结构的安全稳定具有重要意义。选取砂质泥岩为研究对象,通过室内单轴试验完成离散元数值模拟细观参数标定,开展砂质泥岩单轴压缩数值模拟试验,对砂质泥岩破坏过程中的裂纹扩展及能量演化特征进行分析。研究结果表明:①数值模拟与室内试验结果基本一致,细观参数设定合理;②基于能量及裂纹数量的变化,将单轴压缩过程分为压缩阶段、裂纹起裂阶段、裂纹扩展阶段及峰后破坏阶段;③随着加载的进行,砂质泥岩内部耗散能占比增加,裂纹增长速率提升,最终裂纹在宏观破裂面附近聚集而导致岩样破坏;整个过程中,剪切裂纹占主导地位,形成的宏观破裂面角度约为60°;④以耗散能占比 \mathrm\alpha 为判断依据,发现当 \alpha 分别为1.13%、2.24%和10.81%时,裂纹扩展进入下一阶段,同时发现 \alpha =14.90%可以作为岩样破裂前的征兆。该研究量化了岩石内部能量与裂纹扩展的关系,对于利用能量来预测岩石破裂具有一定的参考意义。

       

      Abstract: As a fundamental material in engineering construction, the study of crack propagation in rocks is crucial for ensuring the safety and stability of engineering structures. Sandy mudstone is selected as the study subject, and mesoscopic parameters are calibrated through discrete element numerical simulations based on laboratory uniaxial tests. Uniaxial compression numerical simulations are conducted on sandy mudstone to analyze the crack propagation and energy evolution characteristics during the failure process. The results show that: ①the numerical simulation results are in good agreement with the laboratory test data, and the mesoscopic parameters are reasonably set. ②Based on the changes in energy dissipation and crack quantity, the uniaxial compression process is divided into the compression stage, crack initiation stage, crack propagation stage, and post-peak failure stage. ③As loading progresses, the proportion of dissipated energy inside the sandy mudstone increases, crack growth rate accelerates, and cracks eventually gather near the macro failure surface, leading to the failure of the rock sample. Throughout the process, shear cracks dominate, and the angle of the macro failure surface is approximately 60°. ④Using the dissipated energy proportion (α) as an indicator, it is found that when α reaches 1.13%, 2.24%, and 10.81%, the crack propagation enters the next stage, and α=14.90% can serve as a precursor to the failure of the rock sample. This study quantifies the relationship between energy and crack propagation in rocks, and has certain reference significance for predicting the fracture of rock.

       

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