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Increased permeability and coal and gas outburst prevention using hydraulic flushing technology with cross-seam borehole

机译:使用液压冲洗技术用交叉接缝钻孔增加渗透性和煤气和燃气突出预防

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摘要

Gas and coal outbursts seriously threaten the safe and effective production of coal mines with low-permeability and high-gas coal seams. To solve this problem, a hydraulic flushing technology with cross-seam boreholes was carried out. Based on the strain-softening constitution and Mohr-Coulomb failure criterion related to the gas pressure and second principal stress, a multi-physical coupling model was built. The failure range and permeability evolution after hydraulic flushing were studied, and the mechanism was presented. Furthermore, the optimal spacing of hydraulic flushing boreholes (HFB) was determined to provide the basis for field testing. Field tests were then carried out to verify the feasibility of the numerical model. The results indicate that hydraulic flushing can greatly improve the permeability of a coal seam; the failure range around the HFB increases with the gas drainage days; and the optimal radius and spacing of the HFB are 0.6 and 5.5 m, respectively.
机译:煤气和煤炭爆发严重威胁着具有低渗透率和高煤层煤层的安全有效生产。 为了解决这个问题,进行了一种具有交叉缝孔的液压冲洗技术。 基于与气体压力和第二主应力相关的应变软化构成和MoHR-Coulomb失效标准,建立了一种多物理耦合模型。 研究了液压冲洗后的故障范围和渗透性演化,并提出了该机制。 此外,确定液压冲洗钻孔(HFB)的最佳间隔以提供现场测试的基础。 然后进行现场测试以验证数值模型的可行性。 结果表明,液压冲洗可以大大提高煤层的渗透性; HFB周围的故障范围随燃气排水天增加; HFB的最佳半径和间距分别为0.6和5.5米。

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