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Research and Application of Hydraulic Punching Pressure Relief Antireflection Mechanism in Deep “Three-Soft” Outburst Coal Seam

机译:深层“三软”突出煤层中液压冲压抗反射抗反射机制的研究与应用

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To solve the problems of gas predrainage in deep seams with “three softs” and low-air permeability, hydraulic punching pressure relief antireflection technology is proposed on the basis of the research background of gas predrainage technology in Lugou Mine to alleviate technical problems, such as low gas drainage efficiency, in this mine. Through the analysis of the mechanism of hydraulic punching and coal breaking, combined with FLAC3D software, a hydraulic punching pressure relief antireflection model is established. Then, the fracture radii of coal rock are simulated and calculated. The results show that, under hydraulic punching with a water pressure of 10?MPa and coal outputs of 3?m 3 , 6?m 3 , 9?m 3 , and 12?m 3 , the fracture radii of coal and rock are 3.4?m, 4.8?m, 5.5?m, and 5.9?m, respectively. Using the software to fit the relationship between coal output V and hydraulic punching fracture radius R under the same water pressure, R ?=?2.32479? V 0.3839 is obtained. The field test is carried out in the bottom drainage roadway of 32141 in Lugou Mine. The application effect is as follows: the gas concentration of hydraulic punching with a coal output of 3?m 3 is twice that of ordinary drilling, and the coal output of hydraulic punching with a coal output of 6?m 3 is four times that of ordinary drilling. The extraction concentration is four times that of ordinary drilling, and the extraction concentration of hydraulic punching with a coal output of 9?m 3 is 6.4 times that of ordinary drilling. Combining the results of the numerical simulation and taking into account the actual construction situation on site, the coal output of water jetting from the borehole is 9?m 3 , and the fracture radius is 5.5?m. This outcome means that the effective half radius is 5.5?m, and the borehole spacing is 7.7?m. These values are the construction parameters for large-scale applications. This proposal provides effective technology and equipment for gas drainage in the deep three-soft coal seam. Consequently, it has promotion and reference significance for gas drainage in coal seam of the same geological type.
机译:为了解决“三种柔软”和低透气性的深层接缝中的气体预培养物问题,提出了液压冲压释放抗反射技术,基于卢欧矿山天然气预培养技术的研究背景,以减轻技术问题,如储蓄效率低,在这个矿井中。通过分析液压冲孔和煤矸石机理,结合FLAC3D软件,建立了一种液压冲压释放抗反射模型。然后,模拟和计算煤岩的断裂半径。结果表明,在液压冲压下,水压为10?MPa和3?M 3,6?M 3,9?M 3和12?M 3,煤和岩石的裂缝半径为3.4嗯,4.8?m,5.5?m,5.9米。使用该软件适应煤炭输出V和液压冲压骨折半径R之间的关系,Rα=?2.32479?获得V 0.3839。现场测试是在卢都矿32141的底部排水道路中进行的。施用效果如下:液压冲孔的气体浓度为3?M 3的煤输出是普通钻孔的两倍,液压冲孔的煤输出为6?M 3的煤炭输出是四倍普通钻孔。提取浓度是普通钻孔的四倍,液压冲孔的提取浓度为9μm3的煤输出为普通钻孔的6.4倍。结合数值模拟的结果,并考虑到现场的实际施工情况,钻孔喷射的煤输出为9?M 3,裂缝半径为5.5Ω米。该结果意味着有效半径为5.5Ωm,钻孔间距为7.7μm。这些值是大规模应用的施工参数。该提案为深三软煤层中的储气提供了有效的技术和设备。因此,它具有相同地质型煤层中的气体排水的推广和参考意义。

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