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Numerical simulation study on hard-thick roof inducing rock burst in coal mine 被引量:10
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作者 HE Jiang 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2314-2320,共7页
In order to reveal the dynamic process of hard-thick roof inducing rock burst, one of the most common and strongest dynamic disasters in coal mine, the numerical simulation is conducted to study the dynamic loading ef... In order to reveal the dynamic process of hard-thick roof inducing rock burst, one of the most common and strongest dynamic disasters in coal mine, the numerical simulation is conducted to study the dynamic loading effect of roof vibration on roadway surrounding rocks as well as the impact on stability. The results show that, on one hand, hard-thick roof will result in high stress concentration on mining surrounding rocks; on the other hand, the breaking of hard-thick roof will lead to mining seismicity, causing dynamic loading effect on coal and rock mass. High stress concentration and dynamic loading combination reaches to the mechanical conditions for the occurrence of rock burst, which will induce rock burst. The mining induced seismic events occurring in the roof breaking act on the mining surrounding rocks in the form of stress wave. The stress wave then has a reflection on the free surface of roadway and the tensile stress will be generated around the free surface. Horizontal vibration of roadway surrounding particles will cause instant changes of horizontal stress of roadway surrounding rocks; the horizontal displacement is directly related to the horizontal stress but is not significantly correlated with the vertical stress; the increase of horizontal stress of roadway near surface surrounding rocks and the release of elastic deformation energy of deep surrounding coal and rock mass are immanent causes that lead to the impact instability of roadway surrounding rocks. The most significant measures for rock burst prevention are controlling of horizontal stress and vibration strength.Key words 展开更多
关键词 hard-thick roof rock burst numerical simulation horizontal stress stress wave
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底板型冲击危险巷道深孔断底爆破防冲原理及实践研究 被引量:19
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作者 赵善坤 黎立云 +2 位作者 吴宝杨 刘军 欧阳振华 《采矿与安全工程学报》 EI CSCD 北大核心 2016年第4期636-642,共7页
通过采用弹性薄板小挠度理论对巷道底板受力分析,弄清冲击危险巷道底板冲击的主要影响因素,采用理论分析、数值计算相结合的方式研究断底爆破的防冲机理和优化方案,并对深孔断底爆破的防冲效果进行现场验证。研究发现,采动水平应力是造... 通过采用弹性薄板小挠度理论对巷道底板受力分析,弄清冲击危险巷道底板冲击的主要影响因素,采用理论分析、数值计算相结合的方式研究断底爆破的防冲机理和优化方案,并对深孔断底爆破的防冲效果进行现场验证。研究发现,采动水平应力是造成巷道底鼓的主要原因,而底板的分层厚度、力学性质以及巷道两侧围岩的支护强度是巷道底鼓的主要影响因素。当底板岩层为致密厚质岩层时,当其断裂过程中所释放的弹性变性能会造成底板型冲击动力显现。深孔断底爆破其防冲实质为钻孔卸压法与振动爆破法防冲技术的有机结合。采用底板中部断底爆破与煤层断底爆破相结合的方式,不但可以释放底板内积聚的高应力,破坏其连续传递应力和积聚高能量的能力,也可使巷帮煤体的应力得到释放,卸压效果更为明显。 展开更多
关键词 底板型冲击 深孔断底爆破 采动水平应力 底鼓
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