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Influence of depressurization rate on gas production capacity of high-rank coal in the south of Qinshui Basin, China

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【作者】 SU XuefengLIU YanCUI ZhouqiZHANG JianguoYU LiWANG Kai

【Author】 SU Xuefeng;LIU Yan;CUI Zhouqi;ZHANG Jianguo;YU Li;WANG Kai;Coalbed Methane Exploitation Pilot Test Base,CNPC;Exploration & Development Research Institute,North China Oilfield Company,PetroChina;Coalbed Methane Division of Huabei Oil Field,PetroChina;Shanxi CBM Exploration and Development Branch,PetroChina;

【通讯作者】 SU Xuefeng;

【机构】 Coalbed Methane Exploitation Pilot Test Base,CNPCExploration & Development Research Institute,North China Oilfield Company,PetroChinaCoalbed Methane Division of Huabei Oil Field,PetroChinaShanxi CBM Exploration and Development Branch,PetroChina

【摘要】 A desorption simulation experiment with the condition of simulated strata was designed. The experiment, under different depressurizing rates and the same fluid saturation, was conducted on the sample from 3# coal of Daning coal mine in Jincheng, Shanxi Province. The gas production rate and pressure change at both ends of the sample were studied systematically, and the mechanisms of some phenomena in the experiment were discussed. The experimental results show that, whether at fast or slow depressurizing rate, the methane adsorbed to high-rank coal can effectively desorb and the desorption efficiency can reach above 90%. There is an obvious inflection point on the gas yield curve during the desorption process and it appears after the pressure on the lump of coal reduces below the desorption pressure. The desorption of methane from high-rank coal is mainly driven by differential pressure, and high pressure difference is conducive to fast desorption. In the scenario of fast depressurization, the desorption inflection appears earlier and the gas production rate in the stage of rapid desorption is higher. It is experimentally concluded that the originally recognized strategy of long-term slow CBM production is doubtful and the economic benefit of CBM exploitation from high-rank coal can be effectively improved by rapid drainage and pressure reduction. The field experiment results in pilot blocks of Fanzhuang and Zhengzhuang show that by increasing the drainage depressurization rate, the peak production of gas well would increase greatly, the time of gas well to reach the economic production shortened, the average time for a gas well to reach expected production reduced by half, and the peak gas production is higher.

【Abstract】 A desorption simulation experiment with the condition of simulated strata was designed. The experiment, under different depressurizing rates and the same fluid saturation, was conducted on the sample from 3# coal of Daning coal mine in Jincheng, Shanxi Province. The gas production rate and pressure change at both ends of the sample were studied systematically, and the mechanisms of some phenomena in the experiment were discussed. The experimental results show that, whether at fast or slow depressurizing rate, the methane adsorbed to high-rank coal can effectively desorb and the desorption efficiency can reach above 90%. There is an obvious inflection point on the gas yield curve during the desorption process and it appears after the pressure on the lump of coal reduces below the desorption pressure. The desorption of methane from high-rank coal is mainly driven by differential pressure, and high pressure difference is conducive to fast desorption. In the scenario of fast depressurization, the desorption inflection appears earlier and the gas production rate in the stage of rapid desorption is higher. It is experimentally concluded that the originally recognized strategy of long-term slow CBM production is doubtful and the economic benefit of CBM exploitation from high-rank coal can be effectively improved by rapid drainage and pressure reduction. The field experiment results in pilot blocks of Fanzhuang and Zhengzhuang show that by increasing the drainage depressurization rate, the peak production of gas well would increase greatly, the time of gas well to reach the economic production shortened, the average time for a gas well to reach expected production reduced by half, and the peak gas production is higher.

【基金】 Supported by the China National Science and Technology Major Project(2017ZX05064)
  • 【文献出处】 Petroleum Exploration and Development ,石油勘探与开发(英文版) , 编辑部邮箱 ,2019年03期
  • 【分类号】TE328
  • 【下载频次】13
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