周效志Perry

副教授

副教授 硕士生导师

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所在单位:资源与地球科学学院

职务:地质系教学副主任

学历:博士研究生毕业

办公地点:中国矿业大学文昌校区煤层气开发实验室

在职信息:在岗

主要任职:江苏省低碳技术学会理事

其他任职:中国地质学会会员

论文成果

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Numerical study on CO2 sequestration in low-permeability coal reservoirs to enhance CH4 recovery: Gas driving water and staged inhibition on CH4 output

发布时间:2023-02-24 点击次数:

发表刊物:Journal of Petroleum Science and Engineering
摘要:Gas driving water can decrease the gas-phase effective permeability at the displacement front and block the coalbed methane (CBM) output during CO2-ECBM. However, for low-permeability coal reservoirs, there remains a lack of systematic and in-depth understandings of the inhibition process and quantification. In this work, based on a numerical model of an exploited low permeable coal reservoir, the impact of the injection rate and time on CO2-ECBM was investigated. The CH4 output inhibition mechanism in poorly permeable reservoirs was revealed, the inhibition process was quantified for the first time, and the influence of injection-drainage elements on the process was examined. Eventually, specific findings were confirmed in a field trial. The results demonstrated that (1) CO2 injected into the exploited reservoir could further enhance the CH4 output. The CH4 output rate significantly increased with increasing injection rate and time. (2) For poorly permeable reservoirs, the inhibition effect became more notable because a water-rich bank seemed to be a barrier, which trapped the injected and displaced gas, and free water contained in such media cannot be drained efficiently in a relatively short period. Conversely, it was the barrier that shielded the efficient CO2 storage. The storage efficiency reached as high as 99.9%. (3) The effect was only manifested at a specific stage, and the inhibition duration (TI) and inhibition level (DI) could be considered to characterize the effect. Increasing the injection rate, enhancing the bottom-hole pressure (BHP) drop, and prolonging the injection duration could promote fluid migration (especially fracture water) and further mitigate the effect, with the former two better than the latter one. (4) The hypothesis of homogeneous permeable reservoirs might result in an overestimate of the inhibition duration and inhibition level. A field trial confirmed the existence of the staged inhibition effect, with the inhibition time of three months and the inhibition level of roughly 5%. These findings pave the way to study the complex fluid migration for CO2-ECBM.
论文类型:期刊论文
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收录刊物:SCI