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Crack propagation patterns and energy evolution rules of coal within slotting disturbed zone under various lateral pressure coefficients

机译:不同横向压力系数下缝隙扰动区内煤的裂纹扩展规律和能量演化规律

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摘要

Lateral pressure coefficient is an important parameter in geological engineering, and it influences significantly the damage zone around boreholes. In accordance with the fundamental principles of the Particle Flow Code (PFC), various models were established to investigate the crack propagation patterns and energy evolution rules of coal in disturbed zones of hydraulic slotting for various lateral pressure coefficients. Cracks around a slotted borehole propagate in the horizontal direction when the lateral pressure coefficient lambda is less than 1, distribute uniformly when lambda is equal to 1, and extend mostly in the vertical direction when lambda is greater than 1. The total number of cracks increases linearly with lambda. The variation in kinetic energy for coal failure was recorded; kinetic energy evolution observes a similar rule and its process can be divided into four stages, namely, the quick-release, rapid dissipation, drastic fluctuation, and stabilized stages. The peak value of the kinetic energy increases linearly with lambda. The acoustic emission events distribute discretely when lambda is small and uniformly when lambda is equal to 1. The variation in acoustic emission events tends to increase sharply before decreasing when lambda is greater than 1. The research findings are significant to the exploration of pressure relief mechanisms for hydraulic slotting from a microcosmic perspective.
机译:侧向压力系数是地质工程中的重要参数,它对井眼周围的破坏区域有重大影响。根据粒子流法(PFC)的基本原理,建立了各种模型来研究水力开槽扰动区中煤在不同侧向压力系数下的裂纹扩展规律和能量演化规律。当侧向压力系数λ小于1时,开槽孔周围的裂纹在水平方向上传播;当λ等于1时,裂纹均匀地分布;当λ大于1时,裂纹大部分沿垂直方向扩展。裂纹总数增加与lambda线性相关。记录了煤破坏动能的变化;动能演化遵循相似的规律,其过程可分为四个阶段,即快速释放,快速耗散,剧烈波动和稳定阶段。动能的峰值随λ线性增加。当λ较小时,声发射事件离散地分布,当λ等于1时,声发射事件均匀地分布。当λ大于1时,声发射事件的变化趋于急剧增加,然后减小。当研究压力释放机理时,该研究结果具有重要意义。从微观角度进行液压开槽。

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