Dynamic effects of deep-hole cumulative blasting in coal seam and its application
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摘要: 為研究煤層深孔聚能爆破致裂增透機理,構建聚能爆破分析模型,運用理論分析與數值模擬相結合的方法探討聚能爆破時聚能射流的成型機理、爆炸應力波的傳播特點、煤體力學特征和裂隙擴展機理.結果表明:聚能槽集聚爆轟能量形成聚能射流并產生聚能效應,聚能效應顯著改變了爆炸應力波的傳播特性和煤體的力學性質,在聚能方向煤體所受壓應力峰值是非聚能方向的1.10~1.29倍,有效地促進了裂隙的擴展;且主聚能方向煤體所受壓應力峰值由次聚能方向的0.85倍增大到1.06倍,放緩了煤體所受應力的衰減速度.此外,煤層深孔聚能爆破工程應用實驗表明,聚能爆破后抽采孔平均瓦斯含量是聚能爆破前的1.58倍,有效地提高了煤層透氣性和瓦斯抽采率.Abstract: A model of cumulative blasting was established to study the mechanism of crack propagation and permeability increasing under cumulative blasting in a coal seam. The forming mechanism of shaped charge jet, the propagation characteristics of stress wave and detonation wave, the stress distribution characteristics of coal elements, and the mechanism of crack extension under cumulative blasting were investigated by theoretical analysis and numerical simulation. It is found that the propagation characteristics of detonation wave promote the forming of cumulative jet, and change the propagation characteristics of stress wave and the stress distribution characteristics of coal elements significantly. The stress peak values of coal in the major and minor cumulative directions are 1.10-1.29 times that of coal in the non-cumulative direction, and the stress peak value of coal in the major cumulative direction increases from 0.85 times that of coal in the minor cumulative direction to 1.06 times in the range of blasting effect, slowing down the attenuation rate of the stress peak value of coal and increasing the crack propagation velocity. Besides, field experimental results of cumulative blasting in a coal seam indicate that the average concentration of extracted gas after blasting is 1.58 times that before blasting, and cumulative blasting can promote crack propagation effectively.
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Key words:
- coal seams /
- cumulative blasting /
- crack propagation /
- antireflection /
- numerical simulation
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