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Effect of CO_(2)flooding in an oil reservoir with strong bottom-water drive in the Tahe Oilfield,Tarim Basin,Northwest China
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作者 Li Zhang Haiying Liao Maolei Cui 《Energy Geoscience》 EI 2024年第1期230-233,共4页
The dissolution and diffusion of CO_(2)in oil and water and its displacement mechanism were investigated by laboratory experiment and numerical simulation for Block 9 in the Tahe oilfield,a sandstone oil reservoir wit... The dissolution and diffusion of CO_(2)in oil and water and its displacement mechanism were investigated by laboratory experiment and numerical simulation for Block 9 in the Tahe oilfield,a sandstone oil reservoir with strong bottom-water drive in Tarim Basin,Northwest China.Such parameters were analyzed as solubility ratio of CO_(2)in oil,gas and water,interfacial tension,in-situ oil viscosity distribution,remaining oil saturation distribution,and oil compositions.The results show that CO_(2)flooding could control water coning and increase oil production.In the early stage of the injection process,CO_(2)expanded vertically due to gravity differentiation,and extended laterally under the action of strong bottom water in the intermediate and late stages.The CO_(2)got enriched and extended at the oil-water interface,forming a high interfacial tension zone,which inhibited the coning of bottom water to some extent.A miscible region with low interfacial tension formed at the gas injection front,which reduced the in-situ oil viscosity by about 50%.The numerical simulation results show that enhanced oil recovery(EOR)is estimated at 5.72%and the oil exchange ratio of CO_(2)is 0.17 t/t. 展开更多
关键词 Strong bottom-water drive reservoir CO_(2)flooding Enhanced oil recovery Coning of bottom water Tahe oilfield Tarim Basin Northwest China
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Profile improvement during CO_2 flooding in ultra-low permeability reservoirs 被引量:13
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作者 Zhao Fenglan Zhang Lei +1 位作者 Hou Jirui Cao Shujun 《Petroleum Science》 SCIE CAS CSCD 2014年第2期279-286,共8页
Gas flooding such as CO2 flooding may be effectively applied to ultra-low permeability reservoirs, but gas channeling is inevitable due to low viscosity and high mobility of gas and formation heterogeneity. In order t... Gas flooding such as CO2 flooding may be effectively applied to ultra-low permeability reservoirs, but gas channeling is inevitable due to low viscosity and high mobility of gas and formation heterogeneity. In order to mitigate or prevent gas channeling, ethylenediamine is chosen for permeability profile control. The reaction mechanism of ethylenediamine with CO2, injection performance, swept volume, and enhanced oil recovery were systematically evaluated. The reaction product of ethylenediamine and CO2 was a white solid or a light yellow viscous liquid, which would mitigate or prevent gas channeling. Also, ethylenediamine could be easily injected into ultra-low permeability cores at high temperature with protective ethanol slugs. The core was swept by injection of 0.3 PV ethylenediamine. Oil displacement tests performed on heterogeneous models with closed fractures, oil recovery was significantly enhanced with injection of ethylenediamine. Experimental results showed that using ethylenediamine to plug high permeability layers would provide a new research idea for the gas injection in fractured, heterogeneous and ultra-low permeability reservoirs. This technology has the potential to be widely applied in oilfields. 展开更多
关键词 ETHYLENEDIAMINE organic amine profile improvement ultra-low permeability reservoirs mitigation of gas channeling co2 flooding
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Characteristics and mechanisms of supercritical CO_(2) flooding under different factors in low-permeability reservoirs 被引量:6
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作者 Zheng Chen Yu-Liang Su +2 位作者 Lei Li Fan-Kun Meng Xiao-Mei Zhou 《Petroleum Science》 SCIE CAS CSCD 2022年第3期1174-1184,共11页
In recent years,supercritical CO_(2)flooding has become an effective method for developing lowpermeability reservoirs.In supercritical CO_(2)flooding different factors influence the mechanism of its displacement proce... In recent years,supercritical CO_(2)flooding has become an effective method for developing lowpermeability reservoirs.In supercritical CO_(2)flooding different factors influence the mechanism of its displacement process for oil recovery.Asynchronous injection-production modes can use supercritical CO_(2)to enhance oil recovery but may also worsen the injection capacity.Cores with high permeability have higher oil recovery rates and better injection capacity,however,gas channeling occurs.Supercritical CO_(2)flooding has a higher oil recovery at high pressure levels,which delays the occurrence of gas channeling.Conversely,gas injection has lower displacement efficiency but better injection capacity at the high water cut stage.This study analyzes the displacement characteristics of supercritical CO_(2)flooding with a series of experiments under different injection and production parameters.Experimental results show that the gas breakthrough stage has the fastest oil production and the supercritical CO_(2)injection capacity variation tendency is closely related to the gas-oil ratio.Further experiments show that higher injection rates represent significant ultimate oil recovery and injection index,providing a good reference for developing low-permeability reservoirs. 展开更多
关键词 Low-permeability reservoir Supercritical CO_(2)flooding Influence mechanism Enhanced oil recovery Injection capacity
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Study on the Variation Rule of Produced Oil Components during CO_(2) Flooding in Low Permeability Reservoirs 被引量:1
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作者 Ganggang Hou Tongjing Liu +2 位作者 Xinyu Yuan Jirui Hou Pengxiang Diwu 《Computer Modeling in Engineering & Sciences》 SCIE EI 2020年第6期1223-1246,共24页
CO_(2) flooding has been widely studied and applied to improve oil recovery from low permeability reservoirs.Both the experimental results and the oilfield production data indicate that produced oil components(POC)wil... CO_(2) flooding has been widely studied and applied to improve oil recovery from low permeability reservoirs.Both the experimental results and the oilfield production data indicate that produced oil components(POC)will vary during CO_(2) flooding in low permeability reservoirs.However,the present researches fail to explain the variation reason and rule.In this study,the physical model of the POC variation during CO_(2) flooding in low permeability reservoir was established,and the variation reason and rule were defined.To verify the correctness of the physical model,the interaction rule of the oil-CO_(2) system was studied by related experiments.The numerical model,including 34 components,was established based on the precise experiments matching,and simulated the POC variation during CO_(2) flooding in low permeability reservoir at different inter-well reservoir characteristics.The POC monitoring data of the CO_(2) flooding pilot test area in northeastern China were analyzed,and the POC variation rule during the oilfield production was obtained.The research results indicated that the existence of the inter-well channeling-path and the permeability difference between matrix and channeling-path are the main reasons for the POC variation during CO_(2) flooding in low permeability reservoirs.The POC variation rules are not the same at different inter-well reservoir characteristics.For the low permeability reservoirs with homogeneous inter-well reservoir,the variation of the light hydrocarbon content in POC increases initially followed by a decrease,while the variation of the heavy hydrocarbon content in POC is completely opposite.The carbon number of the most abundant component in POC will gradually increase.For the low permeability reservoirs with the channeling-path existing in the inter-well reservoir,the variation rule of the light hydrocarbon content in POC is increase-decrease-increase-decrease,while the variation rule of the heavy hydrocarbon content in POC is completely opposite.The carbon number variation rule of the most abundant component in POC is increase-decrease-increase. 展开更多
关键词 Low permeability reservoir CO_(2)flooding produced oil component inter-well reservoirs characteristic
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CO2 assisted steam flooding in late steam flooding in heavy oil reservoirs 被引量:1
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作者 XI Changfeng QI Zongyao +7 位作者 ZHANG Yunjun LIU Tong SHEN Dehuang MU Hetaer DONG Hong LI Xiuluan JIANG Youwei WANG Hongzhuang 《Petroleum Exploration and Development》 2019年第6期1242-1250,共9页
To improve the oil recovery and economic efficiency in heavy oil reservoirs in late steam flooding,taking J6 Block of Xinjiang Oilfield as the research object,3D physical modeling experiments of steam flooding,CO2-foa... To improve the oil recovery and economic efficiency in heavy oil reservoirs in late steam flooding,taking J6 Block of Xinjiang Oilfield as the research object,3D physical modeling experiments of steam flooding,CO2-foam assisted steam flooding,and CO2 assisted steam flooding under different perforation conditions are conducted,and CO2-assisted steam flooding is proposed for reservoirs in the late stage of steam flooding.The experimental results show that after adjusting the perforation in late steam flooding,the CO2 assisted steam flooding formed a lateral expansion of the steam chamber in the middle and lower parts of the injection well and a development mode for the production of overriding gravity oil drainage in the top chamber of the production well;high temperature water,oil,and CO2 formed stable low-viscosity quasi-single-phase emulsified fluid;and CO2 acted as a thermal insulation in the steam chamber at the top,reduced the steam partial pressure inside the steam chamber,and effectively improved the heat efficiency of injected steam.Based on the three-dimensional physical experiments and the developed situation of the J6 block in Xinjiang Oilfield,the CO2 assisted steam flooding for the J6 block was designed.The application showed that the CO2 assisted steam flooding made the oil vapor ratio increase from 0.12 to 0.16 by 34.0%,the oil recovery increase from 16.1%to 21.5%,and the final oil recovery goes up to 66.5%compared to steam flooding after perforation adjustment. 展开更多
关键词 heavy oil reservoir three-dimensional physical simulation experiment STEAM flooding co2 ASSISTED STEAM flooding STEAM CHAMBER steam(co2)chamber overriding gravity drainage
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Seismic dynamic monitoring in CO_2 flooding based on characterization of frequency-dependent velocity factor
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作者 张军华 李军 +4 位作者 肖文 谭明友 张云银 崔世凌 曲志鹏 《Applied Geophysics》 SCIE CSCD 2016年第2期307-314,418,共9页
The phase velocity of seismic waves varies with the propagation frequency, and thus frequency-dependent phenomena appear when CO2 gas is injected into a reservoir. By dynamically considering these phenomena with reser... The phase velocity of seismic waves varies with the propagation frequency, and thus frequency-dependent phenomena appear when CO2 gas is injected into a reservoir. By dynamically considering these phenomena with reservoir conditions it is thus feasible to extract the frequency-dependent velocity factor with the aim of monitoring changes in the reservoir both before and after CO2 injection. In the paper, we derive a quantitative expression for the frequency-dependent factor based on the Robinson seismic convolution model. In addition, an inversion equation with a frequency-dependent velocity factor is constructed, and a procedure is implemented using the following four processing steps: decomposition of the spectrum by generalized S transform, wavelet extraction of cross-well seismic traces, spectrum equalization processing, and an extraction method for frequency-dependent velocity factor based on the damped least-square algorithm. An attenuation layered model is then established based on changes in the Q value of the viscoelastic medium, and spectra of migration profiles from forward modeling are obtained and analyzed. Frequency-dependent factors are extracted and compared, and the effectiveness of the method is then verified using a synthetic data. The frequency-dependent velocity factor is finally applied to target processing and oil displacement monitoring based on real seismic data obtained before and after CO2 injection in the G89 well block within Shengli oilfield. Profiles and slices of the frequency-dependent factor determine its ability to indicate differences in CO2 flooding, and the predicting results are highly consistent with those of practical investigations within the well block. 展开更多
关键词 co2 flooding Frequency-dependent velocity factor G89 well block reservoir dynamic monitoring
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Key Problems and Countermeasures in CO_(2)Flooding and Storage 被引量:1
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作者 CHEN Huanqing 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2023年第3期858-872,共15页
Based on literature research in combination with the practice of CO_(2)flooding and storage in Jilin Oilfield,this study assesses the key problems in CO_(2)flooding and storage,proposing the corresponding countermeasu... Based on literature research in combination with the practice of CO_(2)flooding and storage in Jilin Oilfield,this study assesses the key problems in CO_(2)flooding and storage,proposing the corresponding countermeasures from five aspects of CO_(2)gas source condition,namely geological condition evaluation,scheme design incoordination with other production methods,economic and effectiveness evaluation,together with dynamic monitoring and safety evaluation.The results show that CO_(2)flooding is the most economic and effective CO_(2)storage method.In eastern China,inorganic origin CO_(2)gas reservoirs are widely developed and are especially the most enriched in the Paleozoic carbonate rock strata and the Cenozoic Paleogene–Neogene system,which provide a rich resource base for CO_(2)flooding and storage.In the future,CO_(2)generated in the industrial field will become the main gas source of CO_(2)flooding and storage.The evaluation of geological conditions of oil and gas reservoirs is the basis for the potential evaluation,planning scheme design and implementation of CO_(2)flooding and storage.CO_(2)storage should be below the depth of 800 m,the CO_(2)flooding and storage effects in lowpermeability oil reservoirs being the best.CO_(2)geological storage mechanisms primarily consist of tectonic geological storage,bound gas storage,dissolution storage,mineralization storage,hydrodynamic storage and coalbed adsorption storage.The practice of CO_(2)flooding and storage in Jilin Oilfield demonstratesthat the oil increment by CO_(2)flooding is at least 24%higher than by conventional water flooding.The most critical factor determining the success or failure of CO_(2)flooding and storage is economic effectiveness,which needs to be explored from two aspects:the method and technology innovation along with the carbon peaking and carbon neutrality policy support.After CO_(2)is injected into the reservoir,it will react with the reservoir and fluid,the problem of CO_(2)recovery or overflow will occur,so the dynamic monitoring and safety evaluation of CO_(2)flooding and storage are very important.This study is of great significance to the expansion of the application scope of CO_(2)flooding and storage and future scientific planning and deployment. 展开更多
关键词 CO_(2)flooding and storage CO_(2)gas source low permeability reservoir economic effectiveness dynamic monitoring
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Characteristics and mechanism of smart fluid for sweep-controlling during CO_(2) flooding
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作者 XIONG Chunming WEI Falin +5 位作者 YANG Haiyang ZHANG Song DING Bin LEI Zhengdong ZHANG Deping ZHOU Qiang 《Petroleum Exploration and Development》 SCIE 2023年第3期741-750,共10页
A smart response fluid was designed and developed to overcome the challenges of gas channeling during CO_(2)flooding in low-permeability,tight oil reservoirs.The fluid is based on Gemini surfactant with self-assembly ... A smart response fluid was designed and developed to overcome the challenges of gas channeling during CO_(2)flooding in low-permeability,tight oil reservoirs.The fluid is based on Gemini surfactant with self-assembly capabilities,and the tertiary amine group serves as the response component.The responsive characteristics and corresponding mechanism of the smart fluid during the interaction with CO_(2)/oil were studied,followed by the shear characteristics of the thickened aggregates obtained by the smart fluid responding to CO_(2).The temperature and salt resistance of the smart fluid and the aggregates were evaluated,and their feasibility and effectiveness in sweep-controlling during the CO_(2)flooding were confirmed.This research reveals:(1)Thickened aggregates could be assembled since the smart fluid interacted with CO_(2).When the mass fraction of the smart fluid ranged from 0.05%to 2.50%,the thickening ratio changed from 9 to 246,with viscosity reaching 13 to 3100 mPas.As a result,the sweep efficiency in low-permeability core models could be increased in our experiments.(2)When the smart fluid(0.5%to 1.0%)was exposed to simulated oil,the oil/fluid interfacial tension decreased to the level of 1×10^(-2)mN/m.Furthermore,the vesicle-like micelles in the smart fluid completely transformed into spherical micelles when the fluid was exposed to simulated oil with the saturation greater than 10%.As a result,the smart fluid could maintain low oil/fluid interfacial tension,and would not be thickened after oil exposure.(3)When the smart fluid interacted with CO_(2),the aggregates showed self-healing properties in terms of shear-thinning,static-thickening,and structural integrity after several shear-static cycles.Therefore,this fluid is safe to be placed in deep reservoirs.(4)The long-term temperature and salt resistance of the smart fluid and thickened aggregates have been confirmed. 展开更多
关键词 low-permeability reservoirs tight oil CO_(2)flooding sweep-controlling smart fluid fluid characteristics Gemini surfactant self-thickened SELF-HEALING
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低渗砂岩油田CO_(2)驱化学机理及提高采收率研究 被引量:1
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作者 吴向阳 李建勋 +2 位作者 李刚 梅艳 金戈 《当代化工》 CAS 2024年第2期362-365,371,共5页
针对低渗砂岩油藏进行了CO_(2)驱开发技术研究,分析了CO_(2)驱油化学机理及主要影响因素。基于目标油藏流体特征进行了PVT拟合,确定其CO_(2)驱最小混相压力,明确了不同压力及注入时机对CO_(2)驱采收率、气油比、含水率及驱动压差等的影... 针对低渗砂岩油藏进行了CO_(2)驱开发技术研究,分析了CO_(2)驱油化学机理及主要影响因素。基于目标油藏流体特征进行了PVT拟合,确定其CO_(2)驱最小混相压力,明确了不同压力及注入时机对CO_(2)驱采收率、气油比、含水率及驱动压差等的影响规律,探究了CO_(2)泡沫驱在提高采收率方面的效用。结果表明:24.5 MPa为目标区域CO_(2)驱的最小混相压力,采收率会随着压力的升高而增加,28 MPa时CO_(2)驱提高采收率可达30.57%。气体突破时间、总采收率与CO_(2)注入时机密切相关,CO_(2)注入越早,越有利于采收率的提高,出口含水率为60%时注入可提高采收率39.13%。CO_(2)泡沫驱可以在一定程度上起到提高采收率的效用。 展开更多
关键词 低渗砂岩油藏 CO_(2)驱 注入时机 提高采收率
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胜利油田CO_(2)高压混相驱油与封存理论技术及矿场实践
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作者 杨勇 张世明 +6 位作者 曹小朋 吕琦 吕广忠 张传宝 李宗阳 张东 郑文宽 《石油勘探与开发》 EI CAS CSCD 北大核心 2024年第5期1080-1091,共12页
针对胜利油田开展CO_(2)驱油与封存面临的原油轻烃含量低混相难、储层非均质性强波及效率低、易气窜全过程调控难等问题,通过室内实验、技术攻关和矿场实践,形成CO_(2)高压混相驱油与封存理论及关键技术。研究发现,提高地层压力至1.2倍... 针对胜利油田开展CO_(2)驱油与封存面临的原油轻烃含量低混相难、储层非均质性强波及效率低、易气窜全过程调控难等问题,通过室内实验、技术攻关和矿场实践,形成CO_(2)高压混相驱油与封存理论及关键技术。研究发现,提高地层压力至1.2倍最小混相压力之上,可以提高原油中的中重质组分混相能力,增大小孔隙中的原油动用程度,均衡驱替前缘,扩大波及体积。通过超前压驱补能实现快速高压混相,采用梯级气水交替、注采耦合、多级化学调堵等技术全过程动态调控渗流阻力,实现采收率与封存率的协同最优。研究成果应用于高89-樊142 CCUS(二氧化碳捕集、利用与封存)示范区,区块日产油由254.6 t提高至358.2 t,预计实施15年可提高采出程度11.6个百分点,为CCUS规模化应用提供理论和技术支撑。 展开更多
关键词 低渗透油藏 CO_(2)驱 高压混相 采收率 封存率 示范工程
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吉林特低渗油藏长岩心CO_(2)驱替微观动用规律研究
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作者 张辉 李忠诚 +4 位作者 祝孝华 李金龙 李海波 姚兰兰 肖前华 《中国科技论文》 CAS 2024年第1期50-56,共7页
针对松辽盆地莫里青油田特低渗储层动用困难的问题,利用物理模拟实验和核磁共振技术相结合的实验方法,开展长岩心CO_(2)驱替研究。结果表明:岩样CO_(2)驱替驱油效率介于72.30%~80.40%。大孔喉(>33 ms)平均赋存占比为33.65%,小孔喉(&l... 针对松辽盆地莫里青油田特低渗储层动用困难的问题,利用物理模拟实验和核磁共振技术相结合的实验方法,开展长岩心CO_(2)驱替研究。结果表明:岩样CO_(2)驱替驱油效率介于72.30%~80.40%。大孔喉(>33 ms)平均赋存占比为33.65%,小孔喉(<33 ms)平均赋存占比为18.01%;1 PV的CO_(2)驱替后,岩样大孔喉平均相对采出程度为80.67%,小孔喉平均相对采出程度为17.45%;5 PV的CO_(2)驱替后,岩样大孔喉平均相对采出程度为95.68%,小孔喉平均相对采出程度为39.82%,大PV驱替可有效动用小孔喉的油。研究成果可为莫里青油田储层CO_(2)驱替提供理论支撑,同时也为同类油藏开展注气先导试验提供科学指导。 展开更多
关键词 特低渗油藏 核磁共振 CO_(2)驱替 采出程度
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低渗透油藏注CO_(2)混相驱及CO_(2)埋存评价 被引量:1
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作者 侯大力 龚凤鸣 +3 位作者 陈涛 孙雷 赵锐 苏杰 《大庆石油地质与开发》 CAS 北大核心 2024年第1期59-67,共9页
注CO_(2)开发低渗透油藏不仅能增加原油采收率,还能将CO_(2)埋存在地下,实现双赢。为了明确X低渗透油藏注CO_(2)混相驱油机理、CO_(2)在地层中的运移规律以及埋存机理,利用实验和数值模拟相结合的方法,从注CO_(2)混相特征、注CO_(2)参... 注CO_(2)开发低渗透油藏不仅能增加原油采收率,还能将CO_(2)埋存在地下,实现双赢。为了明确X低渗透油藏注CO_(2)混相驱油机理、CO_(2)在地层中的运移规律以及埋存机理,利用实验和数值模拟相结合的方法,从注CO_(2)混相特征、注CO_(2)参数优化和CO_(2)埋存评价3方面对X低渗透油藏进行研究。结果表明:地层原油注CO_(2)最小混相压力为26.03 MPa,CO_(2)有降低原油黏度和密度的作用;通过参数优化确定的推荐注采方案与衰竭开采相比,累计增油量为96.21×10^(4)t,主力开发层系X4⁃2、X4⁃3提高采收率分别为9.37百分点、6.02百分点;CO_(2)注入地层后,随着时间的推移,在平面上不断向四周扩散,在纵向上受重力分异的作用向上运移;评价区块注CO_(2)驱推荐方案预计CO_(2)埋存量为68.08×10^(4)t,其中构造埋存量、束缚埋存量、溶解埋存量和矿化埋存量分别为42.20×10^(4)、17.79×10^(4)、6.24×10^(4)和1.85×10^(4)t。研究成果为低渗透油藏注CO_(2)驱及CO_(2)埋存提供了实验和理论的借鉴意义。 展开更多
关键词 低渗透油藏 CO_(2)驱油与埋存 方案设计 参数优化 埋存评价
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准噶尔盆地东部北10井区中深层稠油CO_(2)非混相驱油技术 被引量:1
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作者 许海鹏 张新奇 +3 位作者 刘蕊 夏近杰 王倩 董宏 《大庆石油地质与开发》 CAS 北大核心 2024年第1期142-148,共7页
准噶尔盆地东部北10井区头屯河组油藏具有埋藏深、原油黏度大、储层强水敏的特点,自探明以来一直未获得有效动用。为了解决油藏难动用的难题进行了CO_(2)-稠油实验,在实验结果的基础上,根据试验区生产现状提出“非混相驱+吞吐”措施,利... 准噶尔盆地东部北10井区头屯河组油藏具有埋藏深、原油黏度大、储层强水敏的特点,自探明以来一直未获得有效动用。为了解决油藏难动用的难题进行了CO_(2)-稠油实验,在实验结果的基础上,根据试验区生产现状提出“非混相驱+吞吐”措施,利用数值模拟手段优化生产参数得到最优方案并预测出生产指标。结果表明:地层稠油注入CO_(2)后原油体积膨胀和黏度降低的能力大幅增强,是提高采收率的主要机理;井区稠油CO_(2)驱替方式为非混相驱,驱替过程中CO_(2)先以溶解和扩散作用为主,待建立驱替通道后才开始产出原油,采收率为29.60%;试验区非混相驱初期见效慢,为加快受效提出“油井吞吐”措施,数值模拟预测非混相驱配合3轮油井吞吐生产,最终采收率可达21.0%,解决了研究区油藏难动用的难题。研究成果对中深层强水敏稠油油藏的动用具有一定的借鉴意义。 展开更多
关键词 中深层稠油 强水敏 CO_(2)非混相驱 提高采收率 北10井区
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底水砂岩气藏注CO_(2)驱气提高采收率机理及埋存效果 被引量:1
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作者 侯大力 龚凤鸣 +2 位作者 陈泊 梁世杰 苏杰 《天然气工业》 EI CAS CSCD 北大核心 2024年第4期93-103,共11页
注CO_(2)已被广泛应用于提高油气藏采收率,但有关底水砂岩气藏注CO_(2)驱及CO_(2)埋存协同开发的研究较少,气态CO_(2)和超临界态CO_(2)驱替天然气的机理和差异尚不明确。为了改善底水砂岩气藏水侵情况和明确气态与超临界态CO_(2)驱提高... 注CO_(2)已被广泛应用于提高油气藏采收率,但有关底水砂岩气藏注CO_(2)驱及CO_(2)埋存协同开发的研究较少,气态CO_(2)和超临界态CO_(2)驱替天然气的机理和差异尚不明确。为了改善底水砂岩气藏水侵情况和明确气态与超临界态CO_(2)驱提高采收率及CO_(2)埋存机理,以X底水砂岩气藏为例,开展了注CO_(2)驱适宜度评价,提出了X气藏CO_(2)驱最优开发方案,并对比了气态和超临界态CO_(2)驱提采机理和效果,最后对注CO_(2)驱最优方案开展了生产及埋存预测。研究结果表明:①X气藏适合进行注CO_(2)驱,注CO_(2)提高采收率的最优方案即注采井网为低注高采、关井时机为采出气CO_(2)浓度达10%~20%、转注时机为地层压力7.5 MPa、压力恢复水平为地层压力7.5 MPa、注气速度为3.5×10^(4) m^(3)/d、注入量为0.25 HCPV,最优方案相对于衰竭式开发预计提高气藏采收率13.83%。②超临界CO_(2)驱抑制底水锥进效果和提高采收率效果优于气态CO_(2)驱。③注CO_(2)驱最优开发方案下,该气藏的CO_(2)总埋存量为4.7×10^(6) t,其中超临界埋存量、溶解埋存量和矿化埋存量占比分别为86.05%、11.33%和2.62%。结论认为,底水砂岩气藏在发生气井水淹后采用超临界CO_(2)驱可以有效改善储层水侵情况,提高了气藏采收率,该认识为底水砂岩气藏的高效开发提供了理论支撑。 展开更多
关键词 底水砂岩气藏 气态CO_(2) 超临界态CO_(2) CO_(2)驱 CO_(2)埋存 气藏采收率 开发方案
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新疆油田中深层稠油CO_(2)驱/吞吐实验研究 被引量:1
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作者 石彦 谢俊辉 +4 位作者 郭小婷 吴通 陈德全 孙琳 杜代军 《油气藏评价与开发》 CSCD 北大核心 2024年第1期76-82,共7页
针对新疆油田中深层稠油油藏的“中等偏强—强”速敏伤害以及“强—极强”水敏伤害引起的注水开发效果不理想的问题,基于CO_(2)独特的物理和化学性质,借助高温高压PVT实验仪和长岩心驱替装置,开展CO_(2)-原油高压物性测定和CO_(2)驱/吞... 针对新疆油田中深层稠油油藏的“中等偏强—强”速敏伤害以及“强—极强”水敏伤害引起的注水开发效果不理想的问题,基于CO_(2)独特的物理和化学性质,借助高温高压PVT实验仪和长岩心驱替装置,开展CO_(2)-原油高压物性测定和CO_(2)驱/吞吐提高采收率可行性研究,结合气相色谱和高温高压流变仪表征产出油的组成及黏度变化。实验结果表明,57.345%摩尔分数的CO_(2)能将溶解气油比(GOR)从32 m^(3)/m^(3)增大至149.3 m^(3)/m^(3)、泡点压力(pb)从6.8 MPa增大至15.7 MPa,原油体积系数从1.06增大至1.27,原油密度从0.8965 g/cm^(3)降低至0.8548 g/cm^(3),原油黏度从419.3 mPa·s降低至253.4 mPa·s,因此CO_(2)能有效补充地层能量,增大原油弹性能,减小渗流阻力。第一轮次0.95 PV(孔隙体积)的CO_(2)驱的原油采出程度为32.8%,焖井24 h后多孔介质中的流体重新分布,第二轮次0.5 PV的CO_(2)驱能提高原油采出程度17.9%。而5轮次CO_(2)吞吐的原油采出程度为63.5%。产出油的黏度呈降低的趋势,主要原因是原油中的沥青质在多孔介质中发生沉积。实验结果明确了CO_(2)驱/吞吐在新疆油田中深层稠油提高采收率的可行性。 展开更多
关键词 CO_(2)驱 CO_(2)吞吐 溶胀抽提 提高采收率 稠油油藏
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致密油藏CO_(2)吞吐驱油和封存注采参数敏感性分析——以鄂尔多斯盆地延长组长7段致密油藏典型储集层为例 被引量:1
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作者 丁帅伟 张蒙 +4 位作者 李远铎 许川 周义鹏 高群 于红岩 《新疆石油地质》 CAS CSCD 北大核心 2024年第2期181-188,共8页
致密油藏CO_(2)吞吐开发具有提高原油采收率和封存CO_(2)的双重效果。目前,对致密油藏CO_(2)吞吐驱油和封存研究中,鲜有学者将CO_(2)封存量相关参数作为评价指标。以鄂尔多斯盆地延长组长7段某致密油藏典型储集层为例,利用数值模拟技术... 致密油藏CO_(2)吞吐开发具有提高原油采收率和封存CO_(2)的双重效果。目前,对致密油藏CO_(2)吞吐驱油和封存研究中,鲜有学者将CO_(2)封存量相关参数作为评价指标。以鄂尔多斯盆地延长组长7段某致密油藏典型储集层为例,利用数值模拟技术分别选取吞吐时机、注气速度、注气时间、焖井时间、生产时间和吞吐轮次为注采参数,以换油率、CO_(2)滞留系数及驱油-封存协同综合系数为评价指标,采用单因素控制变量法和多因素正交试验设计,结合极差分析方法,分析了6个注采参数对3个评价指标的敏感性。结果表明:当注重CO_(2)驱油时,建议注气时间为30~60 d,注气速度为0.001 0~0.003 0 PV/d,吞吐时机小于0.5年;当注重CO_(2)封存时,建议生产时间为30~230 d,注气速度为0.0075~0.010 0 PV/d,注气时间为145~180 d;当CO_(2)驱油和封存协同优化时,建议注气时间为30~65 d,吞吐时机为6个月前,焖井时间为10~20 d。 展开更多
关键词 致密油藏 注采参数 CO_(2)吞吐 CO_(2)地质封存 提高采收率 CO_(2)驱油 协同优化 正交试验
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致密油藏CO_(2)驱和水驱分子动力学模拟及微观机理
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作者 黄鑫淼 林伟 +2 位作者 韩登林 雷征东 赵新礼 《西安石油大学学报(自然科学版)》 CAS 北大核心 2024年第3期72-81,共10页
为了厘清CO_(2)驱和水驱两种驱替介质的微观驱油机理,基于分子动力学模拟方法,分别建立CO_(2)驱油模型和水驱油模型,研究不同驱替条件下亲水纳米孔隙内原油密度随驱替时间的变化规律,分析了驱油过程中烃类分子在纳米孔隙内的运移过程。... 为了厘清CO_(2)驱和水驱两种驱替介质的微观驱油机理,基于分子动力学模拟方法,分别建立CO_(2)驱油模型和水驱油模型,研究不同驱替条件下亲水纳米孔隙内原油密度随驱替时间的变化规律,分析了驱油过程中烃类分子在纳米孔隙内的运移过程。研究结果表明:两种不同注入介质的驱油效率都随着注入速度的增大而增大;在CO_(2)驱油过程中,当注入速度较小时,CO_(2)膨胀发挥主要作用,随着注入速度增大,驱替逐渐发挥主导作用;在亲水纳米孔隙中,当注入水的速度较低时,渗吸发挥主要作用,此时小孔隙中的原油驱替速度比大孔隙快,随着注入速度增大,驱替逐渐发挥主导作用,大孔隙中的原油被快速驱替。 展开更多
关键词 CO_(2)驱油 水驱油 分子动力学 致密油藏
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低渗透平面非均质油藏注采井布井方式对CO_(2)驱开发效果的影响
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作者 李政 吕文峰 +3 位作者 王宏志 李敏 陈天戈 郑自刚 《大庆石油地质与开发》 CAS 北大核心 2024年第1期149-157,共9页
中国陆相沉积低渗透油藏在平面上因受到不同沉积微相分布的影响,储层有效厚度、渗透率平面非均质性较强,实施CO_(2)驱的效果受注采井平面相对位置的影响较大。为探索合理的布井方式,改善开发效果,采用数值模拟方法,以大庆榆树林油田某注... 中国陆相沉积低渗透油藏在平面上因受到不同沉积微相分布的影响,储层有效厚度、渗透率平面非均质性较强,实施CO_(2)驱的效果受注采井平面相对位置的影响较大。为探索合理的布井方式,改善开发效果,采用数值模拟方法,以大庆榆树林油田某注CO_(2)试验区的典型地质油藏参数和注采参数为依据建立理论模型,得到了不同平面非均质性、不同注采井布井方式下的CO_(2)驱开发规律。结果表明:CO_(2)驱注采井布井方式为“高渗注低渗采”和“厚注薄采”时的整体开发效果优于“低渗注高渗采”和“薄注厚采”;储层平面非均质性越强,不同布井方式下的开发效果差异越明显。研究成果可为低渗透平面非均质油藏CO_(2)驱注采井位的优化设计与调整提供重要参考。 展开更多
关键词 CO_(2)驱油 低渗透油藏 平面非均质性 布井方式 数值模拟
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CO_(2)混相驱胶质、沥青质析出规律——以东河6油藏为例
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作者 张利明 李汝勇 +3 位作者 袁泽波 侯大力 王小强 曾昌民 《天然气与石油》 2024年第1期63-67,共5页
掌握油田原油在注CO_(2)过程中是否混相及油层沥青质的沉淀规律具有重要意义。设计了一套高温、高压混相及沉淀实验装置,并开展CO_(2)混相驱胶质、沥青质析出规律的实验研究,模拟东河6油藏注气开采过程,判断注入气体与地层流体是否达到... 掌握油田原油在注CO_(2)过程中是否混相及油层沥青质的沉淀规律具有重要意义。设计了一套高温、高压混相及沉淀实验装置,并开展CO_(2)混相驱胶质、沥青质析出规律的实验研究,模拟东河6油藏注气开采过程,判断注入气体与地层流体是否达到混相,表征油层内胶质、沥青质的析出规律。实验结果表明:东河6油藏注CO_(2)驱提采机理为一次混相;沥青质相对沉淀量随CO_(2)注入比例的增加而迅速增加后又缓慢减少,胶质相对沉淀量随注入比例的增加先降低后增加;注CO_(2)后降压衰竭开采优先采出饱和烃,油层原油沥青质含量迅速增加。东河6油藏注CO_(2)驱保持最低混相压力45.4 MPa以上开采,可提高驱替效率,减少开采过程中胶质、沥青质的析出,提高原油采收率。研究结果可为注CO_(2)油藏提供一种混相压力及沥青质沉淀测定的方法,支撑注CO_(2)油藏开发方案的制定。 展开更多
关键词 油层流体混相 CO_(2)混相驱 胶质沉淀 沥青质沉淀 东河6油藏 原油采收率
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Technologies and practice of CO2 flooding and sequestration in China 被引量:8
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作者 HU Yongle HAO Mingqiang +2 位作者 CHEN Guoli SUN Ruiyan LI Shi 《Petroleum Exploration and Development》 2019年第4期753-766,共14页
The latest advancement of CO2 flooding and sequestration theory and technology in China is systematically described, and the future development direction is put forward. Based on the geological characteristics of cont... The latest advancement of CO2 flooding and sequestration theory and technology in China is systematically described, and the future development direction is put forward. Based on the geological characteristics of continental reservoirs, five theories and key technologies have been developed:(1) Enriched the understandings about the mass transfer characteristics of components between CO2 and crude oil in continental reservoirs, micro-flooding mechanism and sequestration mechanism of different geological bodies.(2) Established the design method of reservoir engineering parameters, injection-production control technology and development effect evaluation technology of CO2 flooding, etc.(3) Developed a series of production engineering technologies such as separated layer CO2 injection technology, high efficiency lifting technology, on-line wellbore corrosion monitoring and protection technology.(4) Innovated a series of surface engineering technology including CO2 capture technology, pipeline CO2 transportation, CO2 surface injection, and production gas circulation injection, etc.(5) Formed a series of supporting technologies including monitoring, and safety and environmental protection evaluation of CO2 flooding reservoir. On this basis, the technological development directions in the future have been put forward:(1) Breakthrough in low-cost CO2 capture technology to provide cheap CO2 gas source;(2) Improve the miscibility technology between CO2 and crude oil to enhance oil displacement efficiency;(3) Improve CO2 sweeping volume;(4) Develop more effective lifting tools and technologies;(5) Strengthen the research of basic theory and key technology of CO2 storage monitoring. CO2 flooding and sequestration in the Jilin Oilfield shows that this technology has broad application prospects in China. 展开更多
关键词 CONTINENTAL reservoirs co2 flooding and SEQUESTRATION enhanced oil recovery reservoir ENGINEERING injection and production ENGINEERING surface ENGINEERING development direction
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