首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Improving the permeability of coal seam with pulsating hydraulic fracturing technique: A case study in Changping coal mine, China
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Improving the permeability of coal seam with pulsating hydraulic fracturing technique: A case study in Changping coal mine, China

机译:采用脉动液压压裂技术提高煤层的渗透性 - 以昌平煤矿,中国

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摘要

To improve the gas permeability of coal seams, industrial experiments of pulsating hydraulic fracturing (PHF) were carried out, and physical properties, including the reasonable fracture radius, gas extraction concentration, water content, permeability, pore and mineral composition of a coal seam, were investigated. The results show that the pulsating peak pressure is the main influencing factor of the fracturing radius, and the free surfaces of the fractured holes and guide holes can realize the directional penetration of the fractured area in the coal seam. The initial gas concentration of the fractured holes and the guide holes are 1.2–1.8 times and 1.5–2.2 times that of the ordinary hole, respectively. The gas concentration decreases with time, and the decay phase of the ordinary hole is approximately 14days after fracturing, while the fractured holes and guide holes are 38days and 34days, and the gas concentrations are stable at 40% and 50%, respectively. The water content is approximately 2%, which is only 1.1 times that of the original coal seam. At the same time, the permeability coefficient of the coal seam increases by 48–217 times. Due to the erosion of pulsating water, the mineral crystals embedded in the coal are transported to the surface to form an erosion hole, which leads to improving the gas permeability of the coal seam by PHF.
机译:为了提高煤层的透气性,进行脉动液压压裂(PHF)的工业实验,以及物理性质,包括合理的骨折半径,气体提取浓度,水含量,渗透性,孔和矿物质组成,被调查了。结果表明,脉动峰值压力是压裂半径的主要影响因子,并且裂缝孔的自由表面和引导孔可以实现煤层中裂缝区域的定向渗透。裂缝孔的初始气体浓度和引导孔的初始气体浓度分别为1.2-1.8倍,普通孔的初始孔1.5-2.2倍。气体浓度随时间减少,普通孔的衰减阶段在压裂后大约14天,而裂缝孔和引导孔是38天和34天,气体浓度分别为40%和50%。水含量约为2%,仅为原煤接缝的1.1倍。同时,煤层的渗透系数增加48-217倍。由于脉动水的腐蚀,嵌入煤中的矿物晶体被输送到表面以形成侵蚀孔,这导致通过PHF改善煤层的燃气渗透性。

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