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Seepage mechanism technical practice of hydraulic fracturing of coal seam and auxiliary image simulation technology

机译:煤层煤层水力压裂渗流机制技术实践及辅助图像仿真技术

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摘要

A new method of fracturing hydraulic fracturing is proposed for the characteristics of poor coal permeability and soft coal in coal mine area in China. This method can make the hydraulic pressure concentrated on the coal at one point, and the water pressure is reduced, Effective water pressure increases, the smaller the flow that can get a better fracture effect. Through the numerical simulation, the law of fracture distribution and permeability evolution during segmental hydraulic fracturing is analyzed. Complete sets of anti-reflection equipment for segmented hydraulic fracturing have been developed, which is mainly composed of mobile high-pressure pump station, high-pressure rubber hose, water injector, putters and corresponding connecting parts. It solves the problem of tightness of hydraulic fracturing device, and breaks through the problem of miniaturization of high pressure pumping station, so that the high pressure pumping station can achieve larger working pressure at smaller flow rate. The whole process is simulated and validated by assistant image simulation technology, and applied to Pansidong Coal Mine of Huainan Mining Group. The industrial test of hydraulic directional fracturing of Pan coal mine in Huainan mining group shows that the loose influence range of coal can reach 10 m, and the pressure of underground movable high pressure hydraulic pumping station reaches 25 MPa, and the flow rate is 180 L/min. Compared with non fracturing drilling, drilling, the average gas concentration after fracturing, the average daily average flow rate of mixed gas drainage quantity is improved significantly, the application effect is good, and the equipment is simple, easy to use, can be repeatedly used, and has better economic benefit and application prospect. (C) 2019 Published by Elsevier Inc.
机译:提出了一种新的压裂水力压裂方法,用于中国煤矿区煤渗透性差的特点。该方法可以使液压在一个点处浓缩在煤上,水压降低,有效的水压增加,流量越小,可以获得更好的裂缝效果。通过数值模拟,分析了分段液压压裂期间的断裂分布法和渗透性演化。已经开发了完整的分段液压压裂防反射设备,主要由移动式高压泵站,高压橡胶软管,水注入器,推杆和相应的连接部件组成。它解决了液压压裂装置的密封性的问题,并且通过高压泵站小型化的问题破裂,使得高压泵站可以以较小的流速实现更大的工作压力。通过助理图像仿真技术模拟和验证整个过程,并应用于淮南采矿集团的潘岛煤矿。淮南采矿集团泛煤矿液压方向压裂的工业试验表明,煤炭松散的影响范围达到10米,地下可移动的高压液压泵站的压力达到25 MPa,流速为180升/分钟。与非压裂钻井相比,钻孔,压裂后的平均气体浓度,混合气体排水量的平均平均流量显着提高,应用效果好,设备简单,易用,可以重复使用,并具有更好的经济效益和应用前景。 (c)2019年由elsevier公司发布

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