Xinjiang Petroleum Geology ›› 2023, Vol. 44 ›› Issue (6): 739-750.doi: 10.7657/XJPG20230613
• Review • Previous Articles Next Articles
FU Yarong(), DOU Qinguang, LIU Ze, JIAO Lifang, JI Yuxi, YANG Yajuan, YIN Houfeng
Received:
2022-11-07
Revised:
2023-04-23
Online:
2023-12-01
Published:
2023-11-29
CLC Number:
FU Yarong, DOU Qinguang, LIU Ze, JIAO Lifang, JI Yuxi, YANG Yajuan, YIN Houfeng. Secondary Development of Mature Oilfields in China: Current Status and Prospects[J]. Xinjiang Petroleum Geology, 2023, 44(6): 739-750.
Add to citation manager EndNote|Reference Manager|ProCite|BibTeX|RefWorks
[1] | 贾承造. 中国石油工业上游科技进展与未来攻关方向[J]. 石油科技论坛, 2021, 40(3):1-10. |
JIA Chengzao. China’s petroleum industrial upstream technological development and its future research areas[J]. Petroleum Science and Technology Forum, 2021, 40(3):1-10. | |
[2] | 黄维和, 韩景宽, 王玉生, 等. 我国能源安全战略与对策探讨[J]. 中国工程科学, 2021, 23(1):112-117. |
HUANG Weihe, HAN Jingkuan, WANG Yusheng, et al. Strategies and countermeasures for ensuring energy security in China[J]. Strategic Study of CAE, 2021, 23(1):112-117. | |
[3] | 胡文瑞. “二次开发”发展史[J]. 中国石油石化, 2008(23):42. |
HU Wenrui. Development history of “secondary development”[J]. China Petrochem, 2008(23):42. | |
[4] | 袁士义, 王强, 李军诗, 等. 提高采收率技术创新支撑我国原油产量长期稳产[J]. 石油科技论坛, 2021, 40(3):24-32. |
YUAN Shiyi, WANG Qiang, LI Junshi, et al. EOR technological innovation keeps China’s crude oil production stable on longterm basis[J]. Petroleum Science and Technology Forum, 2021, 40(3):24-32. | |
[5] | 胡文瑞. 论老油田实施二次开发工程的必要性与可行性[J]. 石油勘探与开发, 2008, 35(1):1-5. |
HU Wenrui. Necessity and feasibility of PetroChina mature field redevelopment[J]. Petroleum Exploration and Development, 2008, 35(1):1-5.
doi: 10.1016/S1876-3804(08)60001-4 |
|
[6] | 胡文瑞. 二次开发让老油田“宝刀不老”[J]. 中国石油石化, 2009(13):16-19. |
HU Wenrui. Secondary development makes old oil fields “immortal”[J]. China Petrochem, 2009(13):16-19. | |
[7] | 王志武, 刘恒, 万新德. 高含水中后期油田稳产途径的实践与认识[J]. 大庆石油地质与开发, 1992, 11(4):28-32. |
WANG Zhiwu, LIU Heng, WAN Xinde. Practice and understsnding of getting stable production at middle and late period of high water cut stage[J]. Petroleum Geology & Oilfield Development in Daqing, 1992, 11(4):28-32. | |
[8] | 韩大匡. 深度开发高含水油田提高采收率问题的探讨[J]. 石油勘探与开发, 1995, 22(5):47-55. |
HAN Dakuang. An approach to deep development of high water-cut oil fields to improve oil recovery[J]. Petroleum Exploration and Development, 1995, 22(5):47-55. | |
[9] | 韩大匡, 贾文瑞. 中国油气田开发特征与技术发展[J]. 断块油气田, 1996, 33(3):1-6. |
HAN Dakuang, JIA Wenrui. The development features and technique development of oil & gas fields in China[J]. Fault-Block Oil & Gas Field, 1996, 33(3):1-6. | |
[10] | 刘宝和, 胡文瑞, 闰存章, 等. 调整挖潜,实现稳产:关于玉门老君庙油田提高采收率工作的调查报告[J]. 中国石油石化, 2006(16):62-64. |
LIU Baohe, HU Wenrui, RUN Cunzhang, et al. Adjust and tap potential to achieve stable production:Investigation report on EOR in Laojunmiao oilfield,Yumen[J]. China Petrochem, 2006 (16):62-64. | |
[11] | 胡文瑞. 中国石油二次开发技术综述[J]. 特种油气藏, 2007, 14(6):1-4. |
HU Wenrui. Overview of oilfield secondary development in China[J]. Special Oil & Gas Reservoirs, 2007, 14(6):1-4. | |
[12] | 丁建国. 玉门油田二次开发全面启动[N]. 中国石油报,2007-09-20(1). |
DING Jianguo. The secondary development of Yumen oilfield was fully started[N]. China Petroleum Daily,2007-09-20(1). | |
[13] | 许宁. 成熟油田二次开发理论与实践:以海外河油田新海27块为例[J]. 石油地质与工程, 2008, 22(1):44-51. |
XU Ning. Theory and practice of redevelopment in mature oilfield:Taking Block Xinhai 27 of Haiwaihe as an example[J]. Petroleum Geology and Engineering, 2008, 22(1):44-51. | |
[14] | 任芳祥, 孙洪军, 户昶昊. 辽河油田稠油开发技术与实践[J]. 特种油气藏, 2012, 19(1):1-8. |
REN Fangxiang, SUN Hongjun, HU Changhao. Heavy oil development technology and practices in Liaohe oilfield[J]. Special Oil & Gas Reservoirs, 2012, 19(1):1-8. | |
[15] | 胡文瑞. 宣战剩余油[J]. 中国石油石化, 2008(24):42. |
HU Wenrui. Declared war to residual oil[J]. China Petrochem, 2008(24):42. | |
[16] | 王巧然. 全面推进老油田“二次开发”工程[N]. 中国石油报,2007-07-31(2). |
WANG Qiaoran. Comprehensively promote the “secondary development” project of old oil fields[N]. China Petroleum Daily,2007-07-31(1). | |
[17] | 刘合. 大庆油田聚合物驱后采油技术现状及展望[J]. 石油钻采工艺, 2008, 30(3):1-6. |
LIU He. Current situation and prospect for oil recovery techniques after polymer flooding in Daqing oil field[J]. Oil Drilling & Production Technolgy, 2008, 30(3):1-6. | |
[18] | 唐玮, 胡丹丹, 白喜俊, 等. 喇萨杏油田聚驱后二次开发方向探讨[J]. 石油天然气学报, 2009, 31(1):282-285. |
TANG Wei, HU Dandan, BAI Xijun, et al. Discussion on secondary development direction after polymer flooding in Lasaxing oilfield[J]. Journal of Oil and Gas Technology, 2009, 31(1):282-285. | |
[19] | 韩大匡. 准确预测剩余油相对富集区提高油田注水采收率研究[J]. 石油学报, 2007, 28(2):73-78. |
HAN Dakuang. Precisely predicting abundant remaining oil and improving the secondary recovery of mature oilfields[J]. Acta Petrolei Sinica, 2007, 28(2):73-78. | |
[20] |
郭尚平, 田根林, 王芳, 等. 聚合物驱后进一步提高采收率的四次采油问题[J]. 石油学报, 1997, 18(4):49-53.
doi: 10.7623/syxb199704009 |
GUO Shangping, TIAN Genlin, WANG Fang, et al. The problem of quaternary oil recovery succeeding a polymer flooding[J]. Acta Petrolei Sinica, 1997, 18(4):49-53.
doi: 10.7623/syxb199704009 |
|
[21] | 王萍, 邵先杰, 马平华, 等. 老油田二次开发技术策略及实践[J]. 钻采工艺, 2010, 33(2):48-51. |
WANG Ping, SHAO Xianjie, MA Pinghua, et al. Techigal measures for secondary recovery in maturing fields and its practice[J]. Drilling & Production Technolgy, 2010, 33(2):48-51. | |
[22] |
孙龙德, 江同文, 王凤兰, 等. 关于油田寿命的思考[J]. 石油学报, 2021, 42(1):56-63.
doi: 10.7623/syxb202101005 |
SUN Longde, JIANG Tongwen, WANG Fenglan, et al. Thoughts on the development life of oilfield[J]. Acta Petrolei Sinica, 2021, 42(1):56-63.
doi: 10.7623/syxb202101005 |
|
[23] | 熊春明, 刘玉章, 黄伟, 等. 深部液流转向与调驱技术现状与对策[J]. 石油钻采工艺, 2016, 38 (4):504-509. |
XIONG Chunming, LIU Yuzhang, HUANG Wei, et al. Status and solutions of deep fluid diversion and profile control technique[J]. Oil Drilling & Production Technolgy, 2016, 38 (4):504-509. | |
[24] | 王玉普, 刘义坤, 邓庆军. 中国陆相砂岩油田特高含水期开发现状及对策[J]. 东北石油大学学报, 2014, 38(1):1-9. |
WANG Yupu, LIU Yikun, DENG Qingjun. Current situation and development strategy of the extra high water cut stage of continental facies sandstone oil fields in China[J]. Journal of Northeast Petroleum University, 2014, 38(1):1-9. | |
[25] | 王伟. 老油田的二次开发[J]. 石油知识, 2019, 35(2):35. |
WANG Wei. Secondary development of old oil fields[J]. Petroleum Knowledge, 2019, 35(2):35. | |
[26] | 吕恒宇, 胡永乐, 邹存友. 高含水油藏“二三结合”优化技术研究进展[J]. 科学技术与工程, 2018, 18(4):210-220. |
LÜ Hengyu, HU Yongle, ZOU Cunyou. Research progress on optimization technologies of secondary-tertiary combination in high water cut reservoir[J]. Science Technology and Engineering, 2018, 18(4):210-220. | |
[27] |
邹才能, 丁云宏, 卢拥军, 等. “人工油气藏”理论、技术及实践[J]. 石油勘探与开发, 2017, 44(1):144-154.
doi: 10.11698/PED.2017.01.18 |
ZOU Caineng, DING Yunhong, LU Yongjun, et al. Concept,technology and practice of “man-made reservoirs” development[J]. Petroleum Exploration and Development, 2017, 44(1):144-154. | |
[28] | 刘文岭, 韩大匡, 程蒲, 等. 高含水油田井震联合重构地下认识体系[J]. 石油地球物理勘探, 2011, 46(6):930-937. |
LIU Wenling, HAN Dakuang, CHENG Pu, et al. Reconstruction of underground recognition system based on both seismic data and well data in a mature oilfield with high water cut[J]. Oil Geophysical Prospecting, 2011, 46(6):930-937. | |
[29] |
赵贤正, 赵平起, 李东平, 等. 地质工程一体化在大港油田勘探开发中探索与实践[J]. 中国石油勘探, 2018, 23(2):6-14.
doi: 10.3969/j.issn.1672-7703.2018.02.002 |
ZHAO Xianzheng, ZHAO Pingqi, LI Dongping, et al. Research and practice of geology-engineering integration in the exploration and development of Dagang oilfield[J]. China Petroleum Exploration, 2018, 23(2):6-14.
doi: 10.3969/j.issn.1672-7703.2018.02.002 |
|
[30] |
赵平起, 马跃华, 冯许魁, 等. 油藏渗流场地球物理表征方法[J]. 石油学报, 2021, 42(5):634-640.
doi: 10.7623/syxb202105007 |
ZHAO Pingqi, MA Yuehua, FENG Xukui, et al. A geophysical characterization method of flow field of oil reservoirs[J]. Acta Petrolei Sinica, 2021, 42(5):634-640.
doi: 10.7623/syxb202105007 |
|
[31] | 张阳, 李际, 宋丙慧, 等. 冲积扇储层剩余油研究进展及发展方向[J/OL]. 西南石油大学学报(自然科学版). https://kns.cnki.net/kcms2/detail/51.1718.TE.20230707.1638.004.html. |
ZHANG Yang, LI Ji, SONG Binghui, et al. Research progress and development direction of remaining oil in alluvial fan reservoir[J/OL]. Journal of Southwest Petroleum University (Science & Technology Edition). https://kns.cnki.net/kcms2/detail/51.1718.TE.20230707.1638.004.html. | |
[32] | 郄莹, 王建立, 马佳国, 等. 井震联合分析技术在复杂河流相储层刻画中的应用[J]. 断块油气田, 2021, 28(5):641-644. |
QIE Ying, WANG Jianli, MA Jiaguo, et al. Application of combined well-seismic analysis technology in complex fluvial reservoir characterization[J]. Fault-Block Oil & Gas Field, 2021, 28(5):641-644. | |
[33] | 王立军. 新沟油田二次开发技术探索与实践[J]. 特种油气藏, 2015, 22(2):97-99. |
WANG Lijun. Development and application of re-development technology in Xingou oilfield[J]. Special Oil & Gas Reservoirs, 2015, 22(2):97-99. | |
[34] | 吕传炳, 付亮亮, 李昆, 等. 一种断陷盆地岩性油气藏的勘探方法、设备及系统:201910536456.2[P]. 2021-04-03. |
LÜ Chuanbing, FU Liangliang, LI Kun, et al. Exploration method,equipment and system of lithologic oil and gas reservoir in fault basin:201910536456.2[P]. 2021-04-03. | |
[35] |
吕传炳, 付亮亮, 郑元超, 等. 断陷盆地油藏单元分析方法及勘探开发意义[J]. 石油学报, 2020, 41(2):163-178.
doi: 10.7623/syxb202002003 |
LÜ Chuanbing, FU Liangliang, ZHENG Yuanchao, et al. An analysis method on reservoir unit and its significance in exploration and development of rift basins[J]. Acta Petrolei Sinica, 2020, 41(2):163-178.
doi: 10.7623/syxb202002003 |
|
[36] | 吕传炳, 吴卓雅, 梁星如, 等. 饶阳凹陷蠡县斜坡油藏单元划分及其地质意义[J]. 科学技术与工程, 2020, 20(17):6812-6821. |
LÜ Chuanbing, WU Zhuoya, LIANG Xingru, et al. The division of reservoir unit and its geological significance in Lixian slope of Raoyang sag[J]. Science Technology and Engineering, 2020, 20(17):6812-6821. | |
[37] | 田博, 刘宗宾, 刘超, 等. 海上三角洲相储层构型界面定量识别及剩余油预测[J]. 海洋地质前沿, 2020, 36(4):68-75. |
TIAN Bo, LIU Zongbin, LIU Chao, et al. Quantitative identification of configuration interface for offshore delta reservoir and residual oil prediction[J]. Marine Geology Frontiers, 2020, 36(4):68-75. | |
[38] | 胡滨, 胡文瑞, 李秀生, 等. 老油田二次开发与CO2驱油技术研究[J]. 新疆石油地质, 2013, 34(4):436-440. |
HU Bin, HU Wenrui, LI Xiusheng, et al. Research on secondary development of old oilfields and CO2 flooding technology[J]. Xinjiang Petroleum Geology, 2013, 34(4):436-440. | |
[39] | 李根生, 宋先知, 田守嶒. 智能钻井技术研究现状及发展趋势[J]. 石油钻探技术, 2020, 48(1):1-8. |
LI Gensheng, SONG Xianzhi, TIAN Shouceng. Intelligent drilling technology research status and development trends[J]. Petroleum Drilling Techniques, 2020, 48(1):1-8. | |
[40] | 陈绪跃, 曹通, 高德利, 等. 射流磨钻头流场特性及其外排屑槽影响的数值模拟[J]. 石油钻采工艺, 2020, 42(2):162-166. |
CHEN Xuyue, CAO Tong, GAO Deli, et al. Numerical simulation on the flow field characteristics of jet mill bit and the influence of its external cuttings drainage channel[J]. Oil Drilling & Production Technology, 2020, 42(2):162-166. | |
[41] | 苏义脑, 路保平, 刘岩生, 等. 中国陆上深井超深井钻完井技术现状及攻关建议[J]. 石油钻采工艺, 2020, 42(5):527-542. |
SU Yinao, LU Baoping, LIU Yansheng, et al. Status and research suggestions on the drilling and completion technologies for onshore deep and ultra deep wells in China[J]. Oil Drilling & Production Technology, 2020, 42(5):527-542. | |
[42] |
孙金声, 雷少飞, 白英睿, 等. 高分子材料的力学状态转变机理及在钻井液领域的应用展望[J]. 石油学报, 2021, 42(10):1382-1394.
doi: 10.7623/syxb202110012 |
SUN Jinsheng, LEI Shaofei, BAI Yingrui, et al. Mechanical transformation mechanism of polymer materials and its application prospects in the field of drilling fluids[J]. Acta Petrolei Sinica, 2021, 42(10):1382-1394.
doi: 10.7623/syxb202110012 |
|
[43] |
ZHAO Zhen, BAI Yingrui, SUN Jinsheng, et al. Tough and self-healing hydrophobic association hydrogels with cationic surfactant[J]. Journal of Applied Polymer Science, 2021, 138(27):50645.
doi: 10.1002/app.v138.27 |
[44] |
SUN Jinsheng, CHANG Xiaofeng, LÜ Kaihe, et al. Environmentally friendly and salt-responsive polymer brush based drilling fluids[J]. Colloids and Surfaces A:Physicochemical and Engineering Aspects, 2021, 621:126482.
doi: 10.1016/j.colsurfa.2021.126482 |
[45] | 唐世荣. 老君庙油田L油层沉积相研究在油田开发中的应用[J]. 石油勘探与开发, 1981, 9(3):27-35. |
TANG Shirong. Study on sedimentary facies of L reservoir in Laojunmiao oilfield and its application in oilfield development[J]. Petroleum Exploration and Development, 1981, 9(3):27-35. | |
[46] | 刘春发. 砂岩油田注水开发中的层系井网问题[J]. 石油勘探与开发, 1983, 11(4):65-68. |
LIU Chunfa. A discussion on the grouping of sand members and well patterns in a water-flooding sandstone oilfield[J]. Petroleum Exploration and Development, 1983, 11(4):65-68. | |
[47] | 温忍学, 席继强, 王怀兵, 等. 胡状—庆祖集严重非均质油藏细分重组开发技术探讨[J]. 断块油气田, 2004, 11(2):50-52. |
WEN Renxue, XI Jiqiang, WANG Huaibing, et al. Study on development of the heterogeneity reservoir by subdivision and regroup of formation in Huzhuang-Qingzuji oilfield[J]. Fault-Block Oil & Gas Field, 2004, 11(2):50-52. | |
[48] | 窦松江, 周嘉玺. 复杂断块油藏剩余油分布及配套挖潜对策[J]. 石油勘探与开发, 2003, 30(5):90-93. |
DOU Songjiang, ZHOU Jiaxi. Remainined oil distribution in complicated faulted blocks and its accessory potential exploitation measures[J]. Petroleum Exploration and Development, 2003, 30(5):90-93. | |
[49] | 邓景夫, 李云鹏, 贾晓飞, 等. 海上高含水期油田细分层系技术界限研究[J]. 特种油气藏, 2018, 25(2):116-119. |
DENG Jingfu, LI Yunpeng, JIA Xiaofei, et al. Technical boundaries of reservoir subdivision in offshore oilfield with high water-cut[J]. Special Oil & Gas Reservoirs, 2018, 25(2):116-119. | |
[50] | 王端平. 对胜利油区提高原油采收率潜力及转变开发方式的思考[J]. 油气地质与采收率, 2014, 21(4):1-4. |
WANG Duanping. Some thoughts about potential of oil recovery efficiency and development model transition in Shengli district[J]. Petroleum Geology and Recovery Efficiency, 2014, 21(4):1-4. | |
[51] |
高聚同. 孤东二区Ng5细分变流线井网调整技术研究[J]. 西南石油大学学报(自然科学版), 2015, 37(3):122-128.
doi: 10.11885/j.issn.1674-5086.2015.03.07.05 |
GAO Jutong. Adjustment technology of well pattern in Gudong No.2 block Ng5based on segmentation variable streamline method[J]. Journal of Southwest Petroleum University(Science & Technology Edition), 2015, 37(3):122-128. | |
[52] | 柏明星, 张志超, 李岩, 等. 砂岩油田高含水后期变流线精细调整研究[J]. 特种油气藏, 2017, 24(2):86-88. |
BAI Mingxing, ZHANG Zhichao, LI Yan, et al. Study on precise flooding direction adjustment of sandstone oilfields in the late stage with high water cut[J]. Special Oil & Gas Reservoirs, 2017, 24(2):86-88. | |
[53] | 刘海成. 孤岛油田层系井网互换油井致效机制及见效模式[J]. 油气地质与采收率, 2021, 28(5):109-115. |
LIU Haicheng. Study on response mechanism and mode of oil well after layer and well pattern interchange in Gudao oilfield[J]. Petroleum Geology and Recovery Efficiency, 2021, 28(5):109-115. | |
[54] | 刘丽杰. 胜坨油田特高含水后期矢量开发调整模式及应用[J]. 油气地质与采收率, 2016, 23(3):111-115. |
LIU Lijie. Vector development adjustment modes and its application in late extra-high water cut stage of Shengtuo oilfield[J]. Petroleum Geology and Recovery Efficiency, 2016, 23(3):111-115. | |
[55] |
宋明水. 胜坨油田成藏条件及勘探开发关键技术[J]. 石油学报, 2021, 42(1):128-142.
doi: 10.7623/syxb202101012 |
SONG Mingshui. Accumulation conditions and key technologies for exploration and development of Shengtuo oilfield in Bohai Bay basin[J]. Acta Petrolei Sinica, 2021, 42(1):128-142.
doi: 10.7623/syxb202101012 |
|
[56] | 康博韬, 姜彬, 陈国宁, 等. 多层底水油藏层间干扰规律研究及应用:以秦皇岛 32-6油田为例[J]. 重庆科技学院学报(自然科学版), 2021, 23(4):18-22. |
KANG Botao, JIANG Bin, CHEN Guoning, et al. Research and application of interlayer interference law in multi-layer bottom water reservoir:Taking QHD32-6 as an example[J]. Journal of Chongqing University of Science and Technology(Natural Sciences Edition), 2021, 23(4):18-22. | |
[57] | 王翔, 郭继香, 陈金梅. 油田深部调剖技术及其应用研究进展[J]. 油田化学, 2020, 37(4):738-744. |
WANG Xiang, GUO Jixiang, CHEN Jinmei. Research progress of deep profile control technology and its applicatio[J]. Oilfield Chemistry, 2020, 37(4):738-744. | |
[58] | 周海燕, 刘斌, 孙强, 等. 海上河流相稠油油田纳米微球多轮次调驱效果评价研究[J]. 新疆石油天然气, 2021, 17(1):60-64. |
ZHOU Haiyan, LIU Bin, SUN Qiang, et al. Study on the effect evaluation of nanoscale microsphere mulit-wheel drive in offshore fluvial heavy oil field[J]. Xinjiang Oil & Gas, 2021, 17(1):60-64. | |
[59] | 潘一, 廖松泽, 杨双春, 等. 纳米材料在提高原油采收率中的研究进展[J]. 中国材料进展, 2021, 40(3):210-217. |
PAN Yi, LIAO Songze, YANG Shuangchun, et al. Research on nanomaterials in oilfield for oil recovery enhancement[J]. Materials China, 2021, 40(3):210-217. | |
[60] | 罗健辉, 杨海恩, 肖沛文, 等. 纳米驱油技术理论与实践[J]. 油田化学, 2020, 37(4):669-674. |
LUO Jianhui, YANG Haien, XIAO Peiwen, et al. Nanofluid flooding technology:Theory and practice[J]. Oilfield Chemistry, 2020, 37(4):669-674. | |
[61] | 李士伦, 汤勇, 侯承希. 注CO2提高采收率技术现状及发展趋势[J]. 油气藏评价与开发, 2019, 6(3):1-8. |
LI Shilun, TANG Yong, HOU Chengxi. Present situation and development trend of CO2 injection enhanced oil recovery technology[J]. Reservoir Evaluation and Development, 2019, 6(3):1-8. | |
[62] | 李士伦, 孙雷, 陈祖华, 等. 再论CO2驱提高采收率油藏工程理念和开发模式的发展[J]. 油气藏评价与开发, 2020, 10(3):1-14. |
LI Shilun, SUN Lei, CHEN Zhuhua, et al. Further discussion on reservoir engineering concept and development mode of CO2 flooding-EOR technology[J]. Reservoir Evaluation and Development, 2020, 10(3):1-14. | |
[63] | 李阳, 康志江, 薛兆杰, 等. 碳酸盐岩深层油气开发技术助推我国石油工业快速发展[J]. 石油科技论坛, 2021, 40(3):33-42. |
LI Yang, KANG Zhijiang, XUE Zhaojie, et al. Deep carbonate oil and gas development technology fuels China’s petroleum industrial development[J]. Petroleum Science and Technology Forum, 2021, 40(3):33-42. | |
[64] | 冯君鹏, 袁书霞, 王蕾, 等. 氮气泡沫在强边底水碳酸盐岩油藏中的应用[J]. 石油知识, 2021(2):50-51. |
FENG Junpeng, YUAN Shuxia, WANG Lei, et al. Application of nitrogen foam in carbonate reservoirs with strong edge and bottom water[J]. Petroleum Knowledge, 2021(2):50-51. | |
[65] |
袁士义, 王强. 中国油田开发主体技术新进展与展望[J]. 石油勘探与开发, 2018, 45(4):657-668.
doi: 10.11698/PED.2018.04.11 |
YUAN Shiyi, WANG Qiang. New progress and prospect of oilfields development technologies in China[J]. Petroleum Exploration and Development, 2018, 45(4):657-668. | |
[66] | 朱旭, 翟泽宇. 大港油田“二三结合”提高采收率研究与试验[J]. 石油工业技术监督, 2020, 36(4):8-11. |
ZHU Xu, ZHAI Zeyu. Research and test of EOR by“two three combination”in Dagang oilfield[J]. Technology Supervision in Petroleum Industry, 2020, 36(4):8-11. | |
[67] |
赵福麟, 张贵才, 周洪涛, 等. 二次采油与三次采油的结合技术及其进展[J]. 石油学报, 2001, 22(5):38-42.
doi: 10.7623/syxb200105008 |
ZHAO Fulin, ZHANG Guicai, ZHOU Hongtao, et al. The combination technique of secondary oil recovery with tertiary oil recovery and its progress[J]. Acta Petrolei Sinica, 2001, 22(5):38-42.
doi: 10.7623/syxb200105008 |
|
[68] | 刘义坤, 文华, 隋新光. 萨中开发区“二三结合”开发实验数值模拟[J]. 大庆石油学院学报, 2007, 31(6):36-39. |
LIU Yikun, WEN Hua, SUI Xinguang. Numerical simulation of second tertiary combined development test in Sazhong development area[J]. Journal of Daqing Petroleum Institute, 2007, 31(6):36-39. | |
[69] |
刘卫东, 王高峰, 廖广志, 等. 化学复合驱“二三结合”油藏产量计算方法[J]. 石油勘探与开发, 2021, 48(6):1218-1223.
doi: 10.11698/PED.2021.06.13 |
LIU Weidong, WANG Gaofeng, LIAO Guangzhi, et al. Production calculation of the second & tertiary recovery combination reservoirs under chemical flooding[J]. Petroleum Exploration and Development, 2021, 48(6):1218-1223.
doi: 10.1016/S1876-3804(21)60104-0 |
|
[70] |
贾德利, 刘合, 张吉群, 等. 大数据驱动下的老油田精细注水优化方法[J]. 石油勘探与开发, 2020, 47(3):629-636.
doi: 10.11698/PED.2020.03.19 |
JIA Deli, LIU He, ZHANG Jiqun, et al. Data-driven optimization for fine water injection in a mature oil field[J]. Petroleum Exploration and Development, 2020, 47(3):629-636. | |
[71] |
刘合, 郑立臣, 杨清海, 等. 分层采油技术的发展历程和展望[J]. 石油勘探与开发, 2020, 47(5):1027-1038.
doi: 10.11698/PED.2020.05.17 |
LIU He, ZHENG Lichen, YANG Qinghai, et al. Development and prospect of separated zone oil production technology[J]. Petroleum Exploration and Development, 2020, 47(5):1027-1038.
doi: 10.1016/S1876-3804(20)60114-8 |
|
[72] | 孙颖, 梁斌, 于富美, 等. 大港油田大型井丛场集约化建设与技术实践[J]. 石油地质与工程, 2022, 36(5):81-86. |
SUN Ying, LIANG Bin, YU Fumei, et al. Intensive construction and technical practice of large well cluster in Dagang oilfield[J]. Petroleun Geology and Engineering, 2022, 36(5):81-86. | |
[73] | 文乾彬, 杨虎, 孙维国, 等. 吉木萨尔凹陷致密油大井丛“工厂化”水平井钻井技术[J]. 新疆石油地质, 2015, 36(3):334-337. |
WEN Qianbin, YANG Hu, SUN Weiguo, et al. Factory-like drilling technology of cluster horizontal wells for tight oil development in Jimusaer sag,Junggar basin[J]. Xinjiang Petroleum Geology, 2015, 36(3):334-337. | |
[74] | 王志月, 高德利, 刁斌斌, 等. 考虑“井工厂”学习效应的平台位置优化方法[J]. 天然气工业, 2018, 38(1):102-108. |
WANG Zhiyue, GAO Deli, DIAO Binbin, et al. Optimization of platform positioning considering the learning effect in the “well factory” mode[J]. Natural Gas Industry, 2018, 38(1):102-108. | |
[75] | 胡文瑞, 金仲臣, 雷群. 长庆油田开发过程中的配套工艺技术[J]. 石油钻采工艺, 2000, 22(6):51-53. |
HU Wenrui, JIN Zhongchen, LEI Qun. The matching technology of development proccess in Changqing oil field[J]. Oil Drilling & Production Technolgy, 2000, 22(6):51-53. | |
[76] | 耿玉广, 宋丽梅, 刘海俊, 等. 岔河集油田支环状掺水集油工艺[J]. 油气田地面工程, 2014, 38(11):68-69. |
GENG Yuguang, SONG limei, LIU Haijun, et al. Branch ring water mixed oil gathering technology in Chaheji oilfield[J]. Oil-Gas Field Surface Engineering, 2014, 38(11):68-69. | |
[77] | 刘天一. 管理新风激活“一池春水”:华北油田聚焦管理提升夯实企业根基侧记[N]. 中国石油报,2022-07-27(4). |
LIU Tianyi. New management style activates “spring water in a pool”:Sidelights of North China oilfield focusing on management improvement and consolidating enterprise foundations[N]. China Petroleum News,2022-07-27(4). | |
[78] |
贾承造. 中国石油工业上游发展面临的挑战与未来科技攻关方向[J]. 石油学报, 2020, 41(12):1445-1464.
doi: 10.7623/syxb202012001 |
JIA Chengzao. Development challenges and future scientific and technological researches in China’s petroleum industry upstream[J]. Acta Petrolei Sinica, 2020, 41(12):1445-1464.
doi: 10.7623/syxb202012001 |
|
[79] | 李小永, 李经纬, 付亚荣, 等. 油水井智能堵水调剖技术现状及发展趋势[J]. 石油钻采工艺, 2021, 43(4):78-87. |
LI Xiaoyong, LI Jingwei, FU Yarong, et al. Present situation and development trend of intelligent water shutoff and profile control technology in oil-water wells[J]. Oil Drilling & Production Technolgy, 2021, 43(4):78-87. | |
[80] |
贾爱林, 郭智, 郭建林, 等. 中国储层地质模型30年[J]. 石油学报, 2021, 42(11):1506-1515.
doi: 10.7623/syxb202111010 |
JIA Ailin, GUO Zhi, GUO Jianlin, et al. Research achievements on reservoir geological modeling of China in the past three decades[J]. Acta Petrolei Sinica, 2021, 42(11):1506-1515.
doi: 10.7623/syxb202111010 |
|
[81] | 李宜强, 张津, 潘登, 等. 高含水期微观剩余油赋存规律:以大港油田小集区块和港西区块为例[J]. 新疆石油地质, 2021, 42(4):444-449. |
LI Yiqiang, ZHANG Jin, PAN Deng, et al. Occurrence laws of microscopic remaining oil in high water-cut reservoirs: A case study on Blocks Xiaoji and Gangxi in Dagang oilfield[J]. Xinjiang Petroleum Geology, 2021, 42(4):444-449. | |
[82] | 付亚荣. 分层采油的量子纠缠霍尔效应及其哲学拓展[J]. 重庆科技学院学报(自然科学版), 2017, 19(1):43-45. |
FU Yarong. Quantum entanglement Holzer effect and philosophical development of stratified production[J]. Journal of Chongqing University of Science and Technology(Natural Sciences Edition), 2017, 19(1):43-45. | |
[83] | 吴伟, 张博. 太平油田强边底水稠油油藏剩余油赋存规律[J]. 新疆石油地质, 2021, 42(2):173-178. |
WU Wei, ZHANG Bo. Occurrence law of remaining oil in heavy oil reservoirs with strong edge and bottom water in Taiping oilfield[J]. Xinjiang Petroleum Geology, 2021, 42(2):173-178. | |
[84] |
张旗, 焦守涛, 李明超, 等. 量子纠缠技术在地质学上应用的可能性[J]. 地学前缘, 2019, 26(4):159-169.
doi: 10.13745/j.esf.sf.2019.5.10 |
ZHANG Qi, JIAO Shoutao, LI Mingchao, et al. Applicability of quantum technology[J]. Earth Science Frontiers, 2019, 26(4):159-169.
doi: 10.13745/j.esf.sf.2019.5.10 |
|
[85] | 路保平. 中国石化石油工程技术新进展与发展建议[J]. 石油钻探技术, 2021, 49(1):1-10. |
LU Baoping. New progress and development proposals of Sinopec’s petroleum engineering technologies[J]. Petroleum Drilling Techniques, 2021, 49(1):1-10. | |
[86] | 孙龙德, 苏新亮, 朱兴珊, 等. 低油价下石油业面临的形势与关键技术方向[J]. 国际石油经济, 2016, 24(1):2-9. |
SUN Longde, SU Xinliang, ZHU Xingshan, et al. The situation and technology development of oil industry under low oil price[J]. International Petroleum Economics, 2016, 24(1):2-9. | |
[87] | 刘洋, 李三忠, 钟世华, 等. 机器学习:海底矿产资源智能勘探的新途径[J/OL]. 地学前缘. https://kns.cnki.net/kcms/detail/11.3370.P.20230426.1714.004.html. |
LIU Yang, LI Sanzhong, ZHONG Shihua, et al. Machine learning:A new approach to intelligent exploration of seafloor mineral resources[J/OL]. Earth Science Frontiers. https://kns.cnki.net/kcms/detail/11.3370.P.20230426.1714.004.html. | |
[88] |
匡立春, 刘合, 任义丽, 等. 人工智能在石油勘探开发领域的应用现状与发展趋势[J]. 石油勘探与开发, 2021, 48(1):1-11.
doi: 10.11698/PED.2021.01.01 |
KUANG Lichun, LIU He, REN Yili, et al. Application and development trend of artificial intelligence in petroleum exploration and development[J]. Petroleum Exploration and Development, 2021, 48(1):1-11.
doi: 10.1016/S1876-3804(21)60001-0 |
|
[89] | 邹才能, 张国生, 杨智, 等. 非常规油气概念、特征、潜力及技术:兼论非常规油气地质学[J]. 石油勘探与开发, 2013, 40(4):385-399. |
ZOU Caineng, ZHANG Guosheng, YANG Zhi, et al. Geological concepts,characteristics,resource potential and key techniques of unconventional hydrocarbon:On unconventional petroleum geology[J]. Petroleum Exploration and Development, 2013, 40(4):385-399. | |
[90] | 付亚荣. 未来采油工程新技术:纳米机器人[J]. 石油钻采工艺, 2016, 38 (1):128-132. |
FU Yarong. New technology for future oil production:nanorobot[J]. Oil Drilling & Production Technology, 2016, 38(1):128-132. | |
[91] | 杨景斌, 侯吉瑞, 屈鸣, 等. 2-D智能纳米黑卡在低渗透油藏中的驱油性能评价[J]. 油田化学, 2020, 37(2):305-310. |
YANG Jingbin, HOU Jirui, QU Ming, et al. Evaluation of oil displacement performance of two-dimensional smart black nano-card in low permeability reservoir[J]. Oilfield Chemistry, 2020, 37(2):305-310. | |
[92] | 庞志庆, 刘夕梦, 汪艳勇, 等. “双碳”目标下大庆油田绿色低碳发展实践与思考[J]. 石油科技论坛, 2023, 42(2):30-39. |
PANG Zhiqing, LIU Ximeng, WANG Yanyong, et al. Practice and thinking on green and low-carbon development of Daqing oilfield under “carbon peak and carbon neutrality” goal[J]. Petroleum Science and Technology Forum, 2023, 42(2):30-39. | |
[93] | 付亚荣, 宋贾利, 钱洪霞, 等. “容和一号”带给油气田“双碳”发展的思考[J]. 石油石化节能, 2022, 12(4):52-54. |
FU Yarong, SONG Jiali, QIAN Hongxia, et al. Thoughts on “Double Carbon” development of oil and gas fields brought by “Ronghe No.1”[J]. Energy Conservation in Petroleum & Petrochemical Industry, 2022, 12(4):52-54. | |
[94] | 张映红. 关于能源结构转型若干问题的思考及建议[J]. 国际石油经济, 2021, 29(2):1-15. |
ZHANG Yinghong. Thinking and suggestions for China’s energy structure transformation[J]. International Petroleum Economics, 2021, 29(2):1-15. |
[1] | TAN Liangbo, CHANG Lunjie, CHEN Hong, YANG Zhizhao, HE Xianghui, LIU Yishi, LI Hongbo. Application of Intercalative Gel-Particle Profile Control Technology in Hade Oilfield [J]. Xinjiang Petroleum Geology, 2020, 41(2): 228-231. |
[2] | XU Haixia1, YUAN Xu2, YUAN Zebo1, REN Lihua1, CHENG Fang3, ZHAO Jing2. Evaluation of Modified Bio-Polymers Suitable for High-Temperature High-Salinity Conditions in Hade Oilfield [J]. , 2018, 39(2): 1-1. |
[3] | QIN Shan1, WANG Jian1, NI Cong2, WU Fengdou1, CHEN Jia1, ZHANG Yangyang3. Composite Profile Control System of Secondary Crosslinking Gels and Polymer Microspheres for Low Permeability Reservoir [J]. , 2016, 37(1): 1-1. |
[4] | CHEN ZehuaZHAO XiutaiWANG Zengbao. Laboratory Experiment on Asynchronous Crosslinking System for Deep Profile Control [J]. , 2015, 36(3): 1-1. |
[5] | ZHOU Daiyu1, ZHAO Ji1, WANG Jin2, LUO Qiang2, XIAO Chunyan1, YUAN Fenggang2, ZHAO Hong1. Application of Deep Profile Control Technology in Lunnan Oilfield, Tarim Basin [J]. , 2014, 35(4): 1-1. |
[6] | ZHANG Jinga, LI Jiaqib, CAI Xianpinga, JI Yongjuna, XIE Shouchanga, CHENG Haoa. Application of Fiber Mixed Sand Fracturing in Karamay Oilfield [J]. , 2013, 34(5): 1-1. |
[7] | HU Bin1,2, HU Wenrui3, LI Xiusheng1, BAO Jingwei4. Research on Secondary Development of Old Oilfields and CO2 Flooding Technology [J]. , 2013, 34(4): 1-1. |
[8] | GONG Zhao-bo, QIAO Yue-hua, LIU Qing-ming, ZHAO Jun, FU Guang-hui, BAI Xue, ZHA Ke-jian. Early Application Effectiveness of Deep Profile-Controlling Technology to Badaowan Reservoir in D-12 Well Area in Cainan Oilfield [J]. Xinjiang Petroleum Geology, 2011, 32(4): 406-408. |
[9] | ZHANG Yu, WANG Jian-feng, XIANG Qian, ZHOU Chun-xia, LIU Bin, ZHANG Jun, QIU Yang. Evaluation Method for Economic Benefit of Secondary Development in Karamay Oil Field [J]. Xinjiang Petroleum Geology, 2010, 31(5): 551-553. |
[10] | LI Yong-xin, LI Dong-wen, LI Hong, WANG Yu-qin, WU Yue-feng, ZHANG Ting-hui. Discussion on Production Methods for Hongshanzui Conglomerate Reservoir [J]. Xinjiang Petroleum Geology, 2008, 29(4): 507-509. |
[11] | LU Xiao-guang, ZHANG Yong-qing, CHEN Bing. Facies-Controlled Modeling for Mature Oilfield Development [J]. Xinjiang Petroleum Geology, 2005, 26(1): 77-79. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||