上湾煤矿坚硬顶板分段水力压裂弱化技术的应用及其效果评价

    Application and effect evaluation of segmented hydraulic fracturing weakening technology for hard roof at Shangwan Coal Mine

    • 摘要: 近年来,水力压裂技术因其安全、高效、可控性强等特性,逐渐成为坚硬顶板弱化领域的研究热点。但已有的短钻孔水力压裂的影响范围和治理效果有限,无法在高位岩层中进行源头治理,防治效果难以保证。因此,本文以神东矿区上湾煤矿12403工作面为背景,针对煤矿高位坚硬顶板引发的强矿压显现问题,采用定向长钻孔分段水力压裂技术进行顶板区域治理,深入探讨了其工作原理、方案设计及在实际应用中的效果。通过现场效果、压力曲线、钻孔窥视及矿压显现等方面的分析对顶板弱化效果进行了综合评价。研究结果表明,采用定向长钻孔分段水力压裂技术后,钻孔内裂缝发育明显,工作面支架阻力显著降低,坚硬顶板的弱化效果显著,实现了初采阶段的安全高效生产。

       

      Abstract: In recent years, hydraulic fracturing technology has gained attention in the field of hard roof weakening due to its safety, efficiency, and strong controllability. However, existing short-hole hydraulic fracturing techniques have limited influence and effectiveness, especially in high-position rock layers, where source control remains difficult, and the prevention and control effects are hard to guarantee. This study focuses on the 12403 working face of Shangwan Coal Mine in Shendong Mine Area, where the issue of strong mining pressure caused by high-position hard roof is prominent. A segmented directional long-hole hydraulic fracturing technique is applied for roof treatment, and the working principle, scheme design, and practical application effects are thoroughly investigated. Through field results, pressure curves, borehole observation, and mining pressure manifestation analysis, the roof weakening effect is comprehensively evaluated. The results demonstrate that after applying the segmented directional long-hole hydraulic fracturing technique, fractures in the boreholes are significantly developed, the resistance of the working face support is notably reduced, and the hard roof weakening effect is significant, leading to safe and efficient production during the initial mining phase.

       

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