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Theoretical Study and Numerical Simulation Research on the Effect of Coal-Rock Interface on Multistaged Fracturing in the Roof of Outburst Coal Seam

机译:煤岩界面对突出煤层屋盖煤岩界面影响的理论研究与数值模拟研究

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Multistaged fracturing in the roof of outburst coal seam is an efficient and creative technology for coalbed methane (CBM) drainage, which can effectively improve the permeability of coal seam. To reveal its mechanism of permeability enhancement, the effect of coal-rock interface on multistaged fracturing in the roof of outburst coal seam was simulated and discussed in this paper. Firstly, the lithological difference between outburst coal seam and roof was compared, and the concept and significance of multistaged fracturing in the roof of outburst coal seam were explained. Then, the mechanical conditions of multiple fractures in the roof traversing coal-rock interface were analyzed. The effects of mechanical parameters on multiple fractures were numerically simulated. The results indicated that fracturing borehole in adjacent rocks of outburst coal seam is much easier to drill and maintain gas drainage. Considering gas drainage efficiency and avoiding being blocked by coal fines, multistaged fracturing borehole is generally drilled in the stable rock stratum of roof. Whether the multiple fractures in the roof can traverse coal-rock interface is related to mechanical parameters of coal and rock, friction factor of coal-rock interface, angle between horizontal profile and coal-rock interface, cementing strength of coal-rock interface, minimum horizontal stress, and other factors. Higher fracturing fluid pressure contributes to propagating from the reservoir with low elastic modulus to the one with high elastic modulus for hydraulic fracture. Hydraulic fracture is more likely to propagate in the rock stratum with high brittleness index. The research results can improve multistaged fracturing theory and provide technological support for field test.
机译:突出煤层屋顶的多级压裂是煤层气(CBM)排水的有效和创造性的技术,可有效提高煤层的渗透性。为了揭示其渗透性提高机制,模拟了煤岩界面对突出煤层屋顶的多级压裂的影响,并讨论了本文。首先,比较了突出煤层和屋顶之间的岩性差异,并解释了突出煤层屋顶在突出煤层屋顶上的概念和意义。然后,分析了屋顶横穿煤岩界面的多个裂缝的机械条件。数值模拟机械参数对多重裂缝的影响。结果表明,突出煤层相邻岩石中的压裂钻孔更容易钻探和维持煤气排水。考虑到煤气净化效率和避免被煤料阻挡,多级压裂钻孔通常在屋顶的稳定岩石层中钻孔。无论屋顶的多个骨折是否可以穿越煤岩界面都与煤炭和岩石的机械参数有关,煤岩界面的摩擦因子,水平型材和煤岩界面之间的角度,煤岩界面的固定强度,最小水平应力和其他因素。更高的压裂液压有助于从储存器中的储存器传播,以低弹性模量与具有高弹性模量的液压裂缝的弹性模量。液压骨折更可能在具有高脆性指数的岩石层中繁殖。研究结果可以改善多级压裂理论,为现场测试提供技术支持。

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