近直立煤层深浅孔协同爆破机理与应用

Mechanism and Application of Deep and Shallow Hole Collaborative Blasting in Nearly Vertical Coal Seam

  • 摘要: 针对甘肃省窑街煤电集团海石湾煤矿1164#矿区近直立煤层(倾角75°~85°)采用单一深孔爆破方案所导致的大块率高(32%)和煤矸分选困难等问题,基于应力波叠加理论和能量梯级释放原理,提出了深浅孔协同爆破技术。通过建立应力波传播方程和累积损伤模型,结合单位体积能量密度分析及裂隙扩展速度预测,确定了深孔(Φ80 mm×3.0 m)与浅孔(Φ40 mm×1.2 m)的最优参数组合;研发了便携式钻孔参数采集系统,实现钻爆过程数字化管理。现场应用6个月的结果表明,爆后煤体的合格块度占比达到了92.3%,相较于原方案提升24.3个百分点;振动速度降低至2.0 cm/s,完全符合国家标准;单位炸药消耗量减少至0.38 kg/t。该技术为近直立煤层的高效开采提供了全新的技术途径。

     

    Abstract: In view of the problems of high boulder yield (32%), difficult coal gangue sorting and others caused by the adoption of single deep hole blasting scheme for the nearly vertical coal seam (inclination angle 75°-85°) in the 1164# mining area of Haishiwan Coal Mine of Yaojie Coal and Electricity Group in Gansu Province, based on the stress wave superposition theory and the energy cascade release principle, a deep and shallow hole collaborative blasting technology is proposed. By establishing stress wave transmission equations and cumulative damage models, combined with analysis of unit volume energy density and prediction of fissure expansion speed, the optimal parameter combination for deep holes (Φ80 mm×3.0 m) and shallow holes (Φ40 mm×1.2 m) is determined; A portable type of drilling parameter acquisition system is developed to achieve digital management of drilling and blasting process. The 6-month on-site application results show that the qualified lumpiness of coal bodies after blasting is accounted for 92.3%, with an improvement of 24.3 percentage points compared to the original scheme; The vibration speed is reduced to 2.0 cm/s, which completely meets the national standard; The consumption quantity of unit dynamite is reduced to 0.38 kg/t. This technology provides a fully new technical approach for efficient mining of nearly vertical coal seams.

     

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