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Rock Burst Mechanism under Coupling Action of Working Face Square and Regional Tectonic Stress

机译:工作面广场耦合作用下的岩石突发机制及区域构造应力

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摘要

With the development of faults in many coalfields, many large faults will form a relatively independent area, forming regional tectonic stress concentration. Under the influence of mining, it is easy to induce fault activation, produce mine tremor, and then induce rock burst. Through field investigation, theoretical analysis, numerical simulation, and engineering verification, the overburden movement model of No. 3504 working face square and fault activation in Liangbaosi Coal Mine was established. The stress variation and energy release law of working face advance and fault area were analyzed, and the mechanism of rock burst under the coupling action of working face square and regional tectonic stress was revealed. The results show that the regional stress adjustment and fault activation are caused by the large-scale overall movement of overburden during the working face square, and there is a peak value of elastic energy release during the fault activation, which is easy to produce large energy mine earthquake. The energy level of the daily maximum energy event is higher than that of the initial mining stage in the square period, and the location of on-site large energy microseismic event is basically consistent with the predicted fault strike. The study provides a theoretical basis for the prevention and control of rock burst during the working face square under the condition of regional tectonic stress.
机译:随着许多煤田中的断层的发展,许多大故障将形成一个相对独立的区域,形成区域构造应力集中。在采矿的影响下,很容易引起故障激活,产生矿井震颤,然后诱导摇滚爆裂。通过现场调查,理论分析,数值模拟和工程验证,建立了梁息煤矿第3504号工作面广场和故障激活的覆盖性运动模式。分析了工作面前和故障面积的应力变化和能量释放规律,并揭示了在工作面广场耦合作用下的岩脉冲机制和区域构造应力。结果表明,区域压力调整和故障激活是由工作面广场中覆盖层的大规模整体运动引起的,并且在故障激活过程中弹性能量释放的峰值是易于产生的大能量矿山地震。每日最大能量事件的能级高于方形时段中的初始采矿阶段的能级,并且现场大能微震事件的位置基本上与预测的故障撞击一致。该研究为在区域构造应力的条件下为工作面广场的防止和控制岩爆来提供了理论依据。

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