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首页> 外文期刊>Journal of Petroleum Science & Engineering >Analysis of the effect of experimental adsorption uncertainty on CH4 production and CO2 sequestration in Dadas shale gas reservoir by numerical simulations
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Analysis of the effect of experimental adsorption uncertainty on CH4 production and CO2 sequestration in Dadas shale gas reservoir by numerical simulations

机译:数值模拟分析实验吸附不确定对达达斯页岩气藏CH4生产和CO2封存的影响

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摘要

The importance of unconventional gas reservoirs such as shale gas reservoirs has increased with the decline of conventional gas reservoirs and advancement in horizontal drilling and hydraulic fracturing in the world. Recently, there have been many exploration activities in Dadas shales, Turkey. Previously, the adsorption capacifies of CH4 and CO2 on Dadas shale samples were measured by using volumetric adsorption experimental set-up. Although adsorption uncertainties of these experiments were calculated, their effects on CH4 production or CO2 sequestration in Dadas shales were not evaluated in field scale. In this study, the numerical simulations for CH4 gas production via 500 m long horizontal well from Dadas shale gas reservoir with different adsorption cases due to experimental adsorption uncertainties were conducted by using TOUGH + RealGasBrine. It was observed that initial CH4 adsorption capacity of Dadas shales varies from 2.1% to 20.9% because of experimental adsorption uncertainty and absorbed gas volume corrections. Numerical simulations showed initial adsorbed gas % and final adsorbed gas % vary significantly. Similarly, the injection of CO2 into the depleted Dadas shale gas reservoir was analyzed by numerical simulations at different adsorption cases due to experimental adsorption uncertainty and adsorbed gas volume correction. Final adsorbed CO2% varies from 18.1% to 27.5%. Furthermore, there are important differences in the amount of CO2 injected, final adsorbed CH4 % and final adsorbed CO2% during CO2 injection simulations. The main reasons of these differences are experimental adsorption uncertainty and adsorbed gas volume correction. This study showed that the volumetric adsorption experimental method is not reliable in low adsorption values as in Dadas shales. It only gives adsorption ranges. The implication of this study is that the effect of experimental adsorption uncertainty obtained with the volumetric adsorption method on CH4 production or CO2 sequestration in Dadas shale gas reservoir is significant in field scale.
机译:由于常规气体藏和世界水平钻井和水力压裂的进步,诸如页岩气水库等非常规气体储层的重要性增加。最近,土耳其达达斯库尔斯有很多勘探活动。以前,通过使用体积吸附实验设置测量CH4和CO2上的吸附容量。尽管计算了这些实验的吸附不确定性,但它们对DADAS Shales中的CH4生产或CO2螯合的影响不会以现场规模评估。在该研究中,通过使用坚韧的+ Realgasbrine对来自Dadas页岩气储层的CH4气体生产通过500米长的水平井的数值模拟。观察到,由于实验吸附不确定度和吸收气体体积校正,达达斯·萨尔斯的初始CH4吸附能力在2.1%至20.9%之间变化。数值模拟显示出初始吸附的气体%,最终吸附气体%显着变化。类似地,由于实验吸附不确定度和吸附气体体积校正,通过不同吸附例的数值模拟分析了在不同吸附盒的数值模拟中注射CO2进入耗尽的达达斯页岩气储层。最终吸附的CO 2%从18.1%变化至27.5%。此外,在CO 2注射模拟期间,在注射的CO 2的量,最终吸附的CH4%和最终吸附的CO 2%存在重要差异。这些差异的主要原因是实验吸附不确定度和吸附气体体积校正。该研究表明,在达达斯库尔斯的低吸附值中,体积吸附实验方法在低吸附值中不可靠。它只提供吸附范围。本研究的含义是,在DADAS页岩气藏的CH4生产或CO2封存中获得的实验吸附不确定度的效果在达达斯页岩气藏中的实地等级显​​着。

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