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Destabilization and energy characteristics of coal pillar in roadway driving along gob based on rockburst risk assessment

机译:基于岩爆风险评估的采空区煤巷失稳及能量特征

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摘要

Roadway driving along adjacent goafs is an effective method to develop the recovery rate of coal resources. However, rock burst triggered by dynamic destabilization of coal pillars poses a serious threat to safe and efficient mining, thereby significantly restricting the sustainable development of coal mines. In this study, from the perspectives of energy accumulation and dissipation, a mathematical model of coal pillars is established and the energy equilibrium relationship of the mechanical system is analysed. The rock burst mechanism of coal pillars in gob-side entry is obtained based on a fold catastrophe mathematical model. Results indicate that the rock burst triggered by the instability is a destabilization phenomenon. If the stiffness factor of the mechanical system is less than 1 and the external force is enough to lead coal pillars to the peak stress point, then rock burst disaster occurs. The engineering analysis and numerical simulation are conducted to study the rock burst in the gob-side entry that occurred in Xin'an coal mine. Stress release caused by mining can reduce the risk of rock burst to a certain extent. The amount of elastic energy released is 6.4512 × 107 J, which is close to the observation data and verifies the correctness and rationality of the research method. The research result provides a theoretical basis and technical guidance for rock burst prevention and control in roadway driving along adjacent goafs.
机译:沿采空区巷道掘进是提高煤炭资源采收率的有效方法。但是,煤柱动态失稳引发的岩爆对安全高效开采造成了严重威胁,从而严重制约了煤矿的可持续发展。本研究从能量的积累和耗散的角度,建立了煤柱的数学模型,并分析了机械系统的能量平衡关系。基于褶皱突变数学模型,得出了采空区巷道内煤柱岩爆机理。结果表明,由不稳定性触发的岩爆是失稳现象。如果机械系统的刚度因子小于1,并且外力足以将煤柱引至峰值应力点,则会发生岩爆事故。进行了工程分析和数值模拟,研究了新安煤矿采空区沿空巷道的岩爆。采矿引起的应力释放可以在一定程度上降低岩爆的风险。释放的弹性能为6.4512×10 7 J,接近观测数据,验证了该研究方法的正确性和合理性。研究成果为沿空采空区巷道掘进的岩爆防治提供理论依据和技术指导。

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