A numerical simulation study of CO2 injection for enhancing hydrocarbon recovery and sequestration i

来源 :石油科学(英文版) | 被引量 : 0次 | 上传用户:girljiangsha
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Less than 10% of oil is usually recovered from liquid-rich shales and this leaves much room for improvement,while water injection into shale formation is virtually impossible because of the extremely low permeability of the formation matrix.Injecting carbon dioxide (CO2) into oil shale formations can potentially improve oil recovery.Furthermore,the large surface area in organicrich shale could permanently store CO2 without jeopardizing the formation integrity.This work is a mechanism study of evaluating the effectiveness of CO2-enhanced oil shale recovery and shale formation CO2 sequestration capacity using numerical simulation.Petrophysical and fluid properties similar to the Bakken Formation are used to set up the base model for simulation.Result shows that the CO2 injection could increase the oil recovery factor from 7.4% to 53%.In addition,petrophysical characteristics such as in situ stress changes and presence of a natural fracture network in the shale formation are proven to have impacts on subsurface CO2 flow.A response surface modeling approach was applied to investigate the interaction between parameters and generate a proxy model for optimizing oil recovery and CO2 injectivity.
其他文献
We developed an inversion technique to determine in situ stresses for elliptical boreholes of arbitrary trajectory.In this approach,borehole geometry,drilling-induced fracture information,and other available leak-off test data were used to construct a mat
Supported ionic liquid (IL) catalysts [Cnmim]3PMo12O40/Am TiO2 (amorphous TiO2) were synthesized through a one-step method for extraction coupled catalytic oxidative desulfurization (ECODS) system.Characterizations such as FTIR,DRS,wide-angle XRD,N2 adsor
Owing to the increasingly serious environmental issues caused by the sulfur burnt in fuel,desulfurization has become an important topic.In this work,an amphiphilic oxygen-defective tungsten oxide was synthesized by a colloidal chemistry method.The amphiph
Deep eutectic solvents (DESs) are a new class of green solvents analogous to ionic liquids due to their biodegradable capacity and low cost.However,the direct extractive desulfurization of diesel oil by DESs cannot meet the government\'s standard.In thi
With the aim of deep desulfurization,silica-supported polyoxometalate-based ionic liquids were successfully prepared by a one-pot hydrothermal process and employed in heterogeneous oxidative desulfurization of various sulfur compounds.The compositions and
Adsorbent regeneration is critical for a continuous adsorption-regeneration process and often underestimated.In this work,the regeneration of bifunctional AgxO@SBA-15 for [O]-induced reactive adsorptive desulfurization of liquid fuel is reported and furth
Hydraulic fracturing technology can significantly increase oil production from tight oil formations,but performance data show that production declines rapidly.In the long term,it is necessary to increase the development efficiency of block matrix,surfacta
To improve the rate of penetration (ROP) in drilling deep and hard formations,this paper proposes a new drilling method called coiled tubing partial underbalanced drilling (CT-PUBD).As a preliminary investigation into the new drilling method,this paper pr
To investigate the efficiency and stability of Venezuela\'s oil-oriented economy,this paper applied entropy to the analysis.Based on this method,Venezuela\'s oil-centered industry,inefficient regulatory system,and insensitive response to external chan
Wellbore failure can occur at different stages of operations.For example,wellbore collapse might happen during drilling and/or during production.The drilling process results in the removal of an already stressed rock material.If the induced stresses near