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Discrete Element Modeling of Crack Initiation Stress of Marble Based on Griffith’s Strength Theory

机译:基于格里菲斯强度理论的大理石裂纹启动应力的离散元素建模

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Investigating the crack initiation stress of rocks is vital for understanding the gradual damage process of rocks and the evolution law of internal cracks. In this paper, the particle flow code method is used to conduct biaxial compression tests on a marble model with an elliptical crack under different confining pressures. According to the evolution status of microcracks in the rock during compression, four characteristic stresses are defined to reflect the gradual damage process of the marble. Two different methods are used to obtain crack initiation stress of rocks, and the calculation results are compared with those based on Griffith’s strength theory to verify the accuracy of this theory under compressive stress. Based on the numerical simulation results, the evolution law for the strength parameters of marble with the degree of damage is described. According to the proportional relationship between the peak stress and crack initiation stress, a new method for predicting the initiation stress is proposed, whose effectiveness is verified. Overall, the results of this study can serve as a useful guide for solving the important problems of slab cracking and rockburst encountered in underground space engineering.
机译:调查岩石的裂纹启动应力对于了解岩石的逐渐损伤过程和内部裂缝的演化规律至关重要。在本文中,使用颗粒流代码方法在不同狭窄压力下具有椭圆形裂纹的大理石模型对双轴压缩试验。根据压缩期间岩石中微裂纹的演化状态,定义了四种特征应力以反映大理石的逐渐损伤过程。两种不同的方法用于获得岩石的裂纹启动应力,并将计算结果与基于格里菲斯强度理论的计算结果进行比较,以验证该理论在压缩应力下的准确性。基于数值模拟结果,描述了具有损坏程度的大理石强度参数的演化法。根据峰值应力和裂纹启动应力之间的比例关系,提出了一种预测发起应力的新方法,其有效性得到验证。总体而言,本研究的结果可以作为解决地下空间工程中遇到的板坯开裂和岩爆问题的重要问题。

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