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Experimental Study on Quasi-Static Pressure of Slot Hydraulic Blasting

机译:槽式液压爆破准静态压力试验研究

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Air is commonly used as the noncoupling borehole medium in directional slot blasting where the quasi-static pressure is small, the energy utilization rate of the explosive is low, and the breaking efficiency of the coal-rock mass is not high. This study investigates the effect of quasi-static pressure on crack propagation in closed-field blasting. Crack length propagation in the quasi-static pressure stage accounts for more than 60% of the total crack length. Water is therefore proposed as the noncoupling medium of the slotting borehole to increase the quasi-static pressure. A series of experiments was performed to investigate and compare quasi-static pressures generated using noncoupled water-medium blasting and noncoupled air-medium blasting. The experimental results show that the quasi-static pressure is 37–46 times larger in water-medium blasting than in the air-medium case. The experimental measurements show good agreement with theoretical analysis. The results show that the energy utilization rate of the explosives in the hydraulic slotting blasting is high with a notable energy storage effect, and that the fracturing range can be significantly increased. Additionally, fracture by directional blasting using this approach can be more controllable.
机译:在准静态压力小,炸药能量利用率低,煤岩体破碎效率不高的定向缝爆破中,普遍采用空气作为非耦合井眼介质。这项研究调查准静态压力对封闭场爆破中裂纹扩展的影响。准静压阶段的裂纹长度扩展占裂纹总长度的60%以上。因此,建议使用水作为开槽钻孔的非耦合介质,以增加准静态压力。进行了一系列实验,以研究和比较使用非耦合水介质喷射和非耦合空气介质喷射产生的准静态压力。实验结果表明,在水介质喷射过程中,准静态压力比在空气介质情况下高37-46倍。实验测量结果与理论分析吻合良好。结果表明,水力开槽爆破中炸药的能量利用率高,储能效果显着,裂化范围可大幅度提高。另外,使用这种方法进行定向爆破的断裂可能更可控。

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