首页> 外文期刊>Journal of Petroleum Science & Engineering >The coupling mechanism of the thermal-hydraulic-mechanical fields in CH4-bearing coal and its application in the CO2-enhanced coalbed methane recovery
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The coupling mechanism of the thermal-hydraulic-mechanical fields in CH4-bearing coal and its application in the CO2-enhanced coalbed methane recovery

机译:CH4轴承煤中热液压机场的耦合机理及其在二氧化碳增强煤层储存中的应用

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摘要

The injection of CO2 into deep coal seams can not only contribute to the CO2 geological sequestration but also increase the CH4 recovery (CO2-ECBM). Aimed at revealing the coupling mechanism of the thermal-hydraulic-mechanical (THM) fields during the CO2-ECBM process, the numerical models of the THM fields were established. Using COMSOL software, the performances of direct exploitation and CO2-ECBM production are compared. The effects of CO2 pressure injected and production well temperature are provided. The CO2 injection has enhancement effects on gas pressure and CH4 cumulative output. Increasing the CO2 pressure injected can raise the gas pressure and energy in a short time, which improves the efficiency of CO2 injection and CH4 production, and has positive effects on improving CH4 cumulative output and CO2 cumulative storage. The convective heat transfer and solid heat transfer are not obvious due to the low thermal conductivity coefficient and the slow gas migration velocity. Although increasing the production well temperature can raise the CH4 cumulative output and CO2 cumulative storage, the increasing amplitude is small. The differential pressure between the reservoir and the boundaries, and the competitive adsorption of gas are the major factors affecting the permeability. When CO2 doesn't reach the production well, the permeability near the injection well and the production well is mainly affected by the gas competitive adsorption of gas, and the differential pressure, respectively. When CO2 spreads to the production well, the competitive adsorption effect will gradually replace the differential pressure effect on permeability near the production well.
机译:将CO2注入深煤层不能有助于CO 2地质封存,而是增加CH4回收率(CO2-ECBM)。旨在揭示在CO2-ECBM过程中热液压机械(THM)场的耦合机理,建立了THM场的数值模型。使用COMSOL软件,比较了直接开发和CO2-ECBM生产的性能。提供了CO 2压力的影响和生产井温度。 CO2注射对气体压力和CH4累积输出具有增强效应。增加的CO 2压力注入可以在短时间内提高气体压力和能量,这提高了CO2注射和CH4生产的效率,并对改善CH4累积输出和CO2累积储存具有积极影响。由于低导热系数和慢气迁移速度,对流热传递和固体传热不明显。虽然增加生产井温度可以提高CH4累积输出和CO2累积储存,但增幅幅度很小。储层与界限之间的差压,以及气体的竞争吸附是影响渗透性的主要因素。当二氧化碳没有达到生产井时,注射井附近的渗透率和生产井分别主要受气体竞争吸附的气体和差压的影响。当CO2展现到生产井时,竞争的吸附效果将逐渐取代生产井附近渗透性的差压效应。

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