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A novel method of orienting hydraulic fractures in coal mines and its mechanism of intensified conduction

机译:矿井水力压裂的新方法及其强化传导机理

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With increasing coal mining depth, coal-bed methane (CBM) extraction becomes increasingly difficult, especially for underground CBM extraction. This paper proposes a method for the efficient extraction of CBM in underground coal mines that orients a borehole around a hydraulic fracturing borehole, uses a high-pressure water jet to perforate parallel to the coal bed inclination in the boreholes, and finally performs hydraulic fracturing. Because of shear failure at the perforation tip, cracks initiate at the perforation tip during hydraulic fracturing. Moreover, the perforation causes the maximum principal stress at an angle approximately parallel to the perforation axial, which leads to the orderly propagation of the crack in the coal. The initiation pressure of hydraulic fracturing with and without perforation is compared. Under the same stress combination, the initiation pressure is lower for boreholes with perforation than for boreholes without perforation. The initiation pressure also depends on both the ratio between the maximum horizontal principal stress and the vertical stress and the ratio between the maximum and minimum horizontal principal stresses. Additionally, perforation can effectively stress the coal seam, which extends the crack closure time. Field experiment results show that after hydraulic fracturing with the novel method, the gas drainage volume increased by a factor of 11.26, and the drainage concentration increased by a factor of 2.12 compared with the ordinary gas drainage method. (C) 2015 Elsevier B.V. All rights reserved.
机译:随着煤炭开采深度的增加,煤层气(CBM)的提取变得越来越困难,尤其是对于地下煤层气的提取。本文提出了一种在地下煤矿中有效提取煤层气的方法,该方法将井眼对准水力压裂井眼,利用高压水射流平行于井眼中的煤层倾角射孔,最后进行水力压裂。由于射孔尖端的剪切破坏,在水力压裂过程中会在射孔尖端产生裂纹。而且,穿孔在与穿孔轴向近似平行的角度处引起最大主应力,这导致了裂纹在煤中的有序扩展。比较了有孔和无孔的水力压裂的起始压力。在相同的应力组合下,具有穿孔的钻孔的起始压力要低于没有穿孔的钻孔的起始压力。初始压力还取决于最大水平主应力和垂直应力之间的比率以及最大和最小水平主应力之间的比率。另外,射孔可以有效地给煤层施加压力,从而延长了裂缝闭合的时间。现场试验结果表明,与常规瓦斯抽采方法相比,采用新方法进行水力压裂后,瓦斯抽采量增加了11.26倍,瓦斯抽采浓度增加了2.12倍。 (C)2015 Elsevier B.V.保留所有权利。

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