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深井扇形组合孔短延时爆破裂纹扩展模拟研究 被引量:5
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作者 温晨 乔秋秋 +2 位作者 邱贤阳 史秀志 陈辉 《矿冶工程》 CAS 北大核心 2023年第1期26-31,共6页
提出了一种扇形组合孔短延时爆破的构想,即在常规的每排扇形崩落孔中间增加一排致裂孔,崩落孔与致裂孔之间短延时间隔起爆。使用ANSYS/LS-DYNA对不同延时时间及不同围压加载条件下的爆破方案进行数值模拟研究,发现高应力环境下常规扇形... 提出了一种扇形组合孔短延时爆破的构想,即在常规的每排扇形崩落孔中间增加一排致裂孔,崩落孔与致裂孔之间短延时间隔起爆。使用ANSYS/LS-DYNA对不同延时时间及不同围压加载条件下的爆破方案进行数值模拟研究,发现高应力环境下常规扇形孔爆破无法形成有效爆破漏斗,扇形组合孔短延时爆破则损伤破裂更加有效、破岩效果更好。此外对不同围压条件下的裂纹扩展进行分析,爆破裂纹扩展趋向于最大主应力方向。数值模拟及现场工程实践证实,当最大主应力方向与扇形崩落排孔成一定小角度,即平行崩落排孔方向加载较大围压、垂直排孔方向加载较小围压时,扇形组合孔短延时爆破不仅可以改善岩石破碎效果,也可以有效保护后排炮孔和保留岩体。 展开更多
关键词 高地应力 ANSYS/LS-DYNA 扇形组合孔 短延时爆破 爆破裂纹扩展
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Active velocity tomography for assessing rock burst hazards in a kilometer deep mine 被引量:10
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作者 He Hu Dou Linming +3 位作者 Li Xuwei qiao qiuqiu Chen Tongjun Gong Siyuan 《Mining Science and Technology》 EI CAS 2011年第5期673-676,共4页
Active velocity tomography was used to determine the stress state and rock burst hazards in a deep coal mine. The deepest longwall face, number 3207 in the Xingcun colliery, was the location of the field trials. The p... Active velocity tomography was used to determine the stress state and rock burst hazards in a deep coal mine. The deepest longwall face, number 3207 in the Xingcun colliery, was the location of the field trials. The positive correlation between stress and seismic velocity was used to link the velocity data with stratum stresses. A GeoPen SE2404NT data acquisition system was used to collect seismic data from 300 g explosive charges fired by instantaneous electric detonator and located in the tail entry. The geophones were installed on the rock bolts in the head entry of LW3207. Velocity inversion shows an inhomogeneous distribution of stress in the longvvall face that could not be obtained from theory or numerical simulations. Three abnormally high P-wave velocity regions were identified that were located on the corners of the two roadways and at the face end near the rail entry side. The maximum velocity gradient is located at the open cut off near the rail entry and is the area most dangerous for rock burst. Mining-induced tremors recorded by a micro-seismic monitoring system demonstrated that the position of energy release during mining coincides with the high velocity gradient area. This technology aids technicians in the coal mine as they design measures to weaken or eliminate potential danger during subsequent mining. 展开更多
关键词 To-mographyRock burstStress fieldSeismic velocityHazard assessment
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