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胜利油区断块油藏低采收率单元改善开发效果研究
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作者 李钢 《中文科技期刊数据库(全文版)自然科学》 2021年第5期35-35,37,共2页
本文以胜利油区复杂断块油藏开发单元为研究对象,筛选断块油藏低采收率单元并对其进行开发状况评价,开展影响采收率的因素研究,在此基础上建立断块油藏低采收率单元提高采收率技术对策,形成低采收率单元提高采收率潜力方向。
关键词 断块油藏 低采收率 技术对策
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英东萨尔图油层空气泡沫驱提高采收率研究
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作者 国永红 《内蒙古石油化工》 CAS 2011年第18期119-120,共2页
空气泡沫驱油是一项针对非均质性强、存在裂缝油藏提高采收率的一项新技术,2004年在百色油田仑16块应用,取得了较好的开发效果。目前,英东萨尔图油层水驱效果差,在开发中存在着地层压力低,采油速度低,采出程度低,综合含水高等诸多问题... 空气泡沫驱油是一项针对非均质性强、存在裂缝油藏提高采收率的一项新技术,2004年在百色油田仑16块应用,取得了较好的开发效果。目前,英东萨尔图油层水驱效果差,在开发中存在着地层压力低,采油速度低,采出程度低,综合含水高等诸多问题。本文通过对英东萨尔图油层在开发中存在的主要问题进行分析,找出问题的症结所在,通过与百色油田仑16块地质条件做对比,提出在英东萨尔图油层开展试验,寻找提高采收率的新途径。 展开更多
关键词 非均质性强 水驱效果差 采收率 空气泡沫驱
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柔性颗粒调剖技术研究及标准化应用 被引量:2
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作者 耿超 李新丹 《石油工业技术监督》 2019年第12期28-31,共4页
针对河南油田普通稠油区块非均质性严重导致的窜流严重、开发效果变差的问题,研究出一种柔性颗粒调剖剂。其在温度100℃、矿化度10 000 mg/L条件下,56 h后吸水膨胀可达11倍,悬浮性良好;柔性颗粒粒径为孔喉的0.7~1.6倍时具有较好的封堵能... 针对河南油田普通稠油区块非均质性严重导致的窜流严重、开发效果变差的问题,研究出一种柔性颗粒调剖剂。其在温度100℃、矿化度10 000 mg/L条件下,56 h后吸水膨胀可达11倍,悬浮性良好;柔性颗粒粒径为孔喉的0.7~1.6倍时具有较好的封堵能力,封堵率为90%~97.5%;室内提高采收率8.4个百分点。通过企业标准Q/SH 3135 443-2018《GCY柔性颗粒调剖剂技术要求》的制定,实现对现场用料的标准化管控,累计检测样品23批次,合格率90%。通过现场7口井试验,措施后效果显著。 展开更多
关键词 普通稠油 低采收率 柔性颗粒 调剖剂
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高饱和压力油藏开发方式的研究 被引量:5
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作者 雷广发 《渤海大学学报(自然科学版)》 CAS 2011年第1期83-86,共4页
高饱和压力油藏的主要特点是油气比非常高,原油体积系数非常大,地饱压差比较小。该类油藏在一次采油的开发过程中,存在当地层压力低于饱和压力时,油层脱气严重,地层压力大幅下降,导致采出程度低。特别是地饱压差比较小,所以膨胀时间较短... 高饱和压力油藏的主要特点是油气比非常高,原油体积系数非常大,地饱压差比较小。该类油藏在一次采油的开发过程中,存在当地层压力低于饱和压力时,油层脱气严重,地层压力大幅下降,导致采出程度低。特别是地饱压差比较小,所以膨胀时间较短,很快进入大幅度收缩,当压力从230kgf/cm^2下降到20kgf/cm^2时,体积系数收缩率达到29.9%。通过对锦州油田锦2-6-9大凌河、锦24大凌河、锦29杜家台和锦29热河台4个高饱和压力油藏地质特征、天然能量及注水试验开发情况分析、运用实际数据与理论分析相结合的方法,找出了此类油藏开发效果差的原因,提出了不同开发时期高饱和压力油藏较好开发方式和方法,对锦州油田高饱和压力油藏开发具有指导意义。 展开更多
关键词 高饱和压力油藏 脱气严重 采收率 开发方式 研究
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聚表剂溶液的性能和驱油效果实验探索
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作者 李哲 谢帅 +2 位作者 张学栋 张晓童 龚倩文 《中国化工贸易》 2013年第12期230-231,共2页
为了进一步提高我国原油的采收率,就要求我们能够切实做好油田的含水开发工作,通过对聚表剂溶液的相关实验,对聚表剂溶液在含水量较高时的注入情况以及聚表剂溶液的驱油效果进行了分析。通过此类实验与传统聚合物进行对照发现,聚表... 为了进一步提高我国原油的采收率,就要求我们能够切实做好油田的含水开发工作,通过对聚表剂溶液的相关实验,对聚表剂溶液在含水量较高时的注入情况以及聚表剂溶液的驱油效果进行了分析。通过此类实验与传统聚合物进行对照发现,聚表荆溶液能够有效的降低界面的张力,并且具有低浓高黏的效果。通过这一实验我们还发现,聚表剂溶液在0.57Pv时的驱油效果得到了明显的提高,能够达到11%甚至更高。由于我国大部分油田都存在渗透率过低的情况,希望聚表剂溶液的浓度在600mg/L, 粘度能达到30mpa_s将0.57PV进行段塞的注入,从而达到有效提高原有采收率的效果。 展开更多
关键词 聚表剂溶液采收率注入段塞渗透
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Study of the Chemical Flooding Effect in Gao-63 Reservoir 被引量:2
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作者 Qiuyan Li Xiang'an Yue +2 位作者 Bo Zhang Kai Liu Lei Yang 《Journal of Environmental Science and Engineering(A)》 2017年第7期337-345,共9页
This article is aimed to discuss the impact of using two different kinds of surfactant in enhancing oil recovery in heterogeneous reservoirs. With the background of Jidong oilfield, Rui Feng surfactant which could rea... This article is aimed to discuss the impact of using two different kinds of surfactant in enhancing oil recovery in heterogeneous reservoirs. With the background of Jidong oilfield, Rui Feng surfactant which could reach ultra-low interracial tension and combination surfactant RZ-JD80 with strong emulsifying property are chosen to do oil displacement and profile control-oil displacement experiment in homogeneous core and heterogeneous core respectively. The experiment is aimed to study the effect of oil displacement by injecting surfactant individually and the effect after injecting different profile control agent slug before surfactant flooding in heterogeneous cores. The results suggest that injecting Rui Feng surfactant and RZ-JD80 individually could enhance the oil displacement efficiency about 15 percentage points for homogeneous core. For strongly heterogeneous core, it is low efficiency by using either of these two surfactants individually. However, if injected a very little profile control agent slug before surfactant flooding, both of these two kinds of surfactant could enhance the oil recovery by different degree, especially, polymer microsphere plugging^RZ-JD80 flooding composite technology is more adaptable to Gao-63 reservoir. This technology could increase the recovery by 18.52 percentage points aRer surfactant flooding. 展开更多
关键词 Low permeability heterogeneous reservoir surfactant flooding EMULSIFICATION profile control.
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The Application of CO2-EOR in Ultra-Low Permeability Reservoir
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作者 Bo Chi Min Li Xue Wang Zhaoyong Li Lifang Wu Shuyan Sun Jiankai Wang Yangxin Su Guinan Yang 《Journal of Earth Science and Engineering》 2014年第5期264-270,共7页
CO2 flooding is a process whereby carbon dioxide is injected into an oil reservoir in order to increase output when extracting oil. Since 1952, Wharton obtained the patent concern CO2 flooding, CO2-EOR (CO2 flooding ... CO2 flooding is a process whereby carbon dioxide is injected into an oil reservoir in order to increase output when extracting oil. Since 1952, Wharton obtained the patent concern CO2 flooding, CO2-EOR (CO2 flooding enhance oil recovery) has been one of research hot-spot around the world. According to the statistical data of 2006, there are total of 94 global CO2-EOR projects, including 65 low permeability oilfield projects (79% of the total). Daqing Oilfield is the largest one of China, after more than 50 years of continuous development, oilfield comprehensive water cut has reached over 90%, and the difficulty of oilfield development has been gradually increasing. In recent years, low and ultra-low permeability reservoirs development have played a more and more important role accompany with low permeability reserves in proportion of the total reserves have been increasing year by year. But water-flooding recovery of low permeability reservoir is very low under the influence of reservoir poor properties and heterogeneity. As a kind of greenhouse gas, CO2 flooding can obtain good results for the low permeability reservoir in which the water flooding has proven ineffective. CO2 flooding Pilot Test was conducted under such background since Dec. 2002, over 10 years of practice has proved that CO2 flooding is an effective method to improve the development effect of low permeability reservoir, all experience during the mechanism study and field test should present important references for further larger-scale CO2 flooding projects. 展开更多
关键词 CO2-EOR low-permeability reservoir start-up pressure miscible-pressure MMP (minimum miscible pressure) WAG(water alternating gas injection).
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