[1] 贾忠伟,袁敏,张鑫璐,等. 水驱微观渗流特征及剩余油启动机理[J]. 大庆石油地质与开发, 2018, 37(1): 65-70. doi: 10.19597/J.ISSN.1000-3754.201705069 JIA Zhongwei, YUAN Min, ZHANG Xinlu, et al. Waterflooding microscopic flow characteristics and the remained oil starting mechanisms[J]. Petroleum Geology & Oilfield Development in Daqing, 2018, 37(1): 65-70. doi: 10.19597/J.ISSN.1000-3754.201705069 [2] 王启民,廖广志,牛金刚,等. 聚合物驱油技术的实践与认识[J]. 大庆石油地质与开发, 1999, 18(4): 1-5. doi: 10.3969/j.issn.1000-3754.1999.04.001 WANG Qimin, LIAO Guangzhi, NIU Jin'gang, et al. Theoretical research on polymer flooding[J]. Petroleum Geology & Oilfield Development in Daqing, 1999, 18(4): 1-5. doi: 10.3969/j.issn.1000-3754.1999.04.001 [3] 夏惠芬,王刚,马文国,等. 无碱二元体系的黏弹性和界面张力对水驱残余油的作用[J]. 石油学报, 2008, 29(1): 106-110. doi: 10.3321/j.issn:0253-2697.2008.01.020 XIA Huifen, WANG Gang, MA Wenguo, et al. Influence of viscoelasticity and interfacial tension of nonalkali binary compound solution on recovery efficiency of residual oil after water flooding[J]. Acta Petrolei Sinica, 2008, 29(1): 106-110. doi: 10.3321/j.issn:0253-2697.2008.01.020 [4] 刘婷. 弱碱三元体系对多孔介质中剩余油的作用研究[D]. 大庆:东北石油大学, 2018. LIU Ting. Study on the effect of weak base ternary system on remaining oil in porous medium[D]. Daqing: Northeast Petroleum University, 2018. [5] 黎锡瑜,刘艳华,安俊睿,等. 原位微乳液驱微观驱油实验研究[J]. 油田化学, 2017, 34(1): 137-142. doi: 10.19346/j.cnki.1000-4092.2017.01.028 LI Xiyu, LIU Yanhua, AN Junrui, et al. Experiment study on microscopic oil displacement of situ microemulsion flooding[J]. Oilfield Chemistry, 2017, 34(1): 137-142. doi: 10.19346/j.cnki.1000-4092.2017.01.028 [6] 冀靖宇. TH9区三叠系油藏水驱微观剩余油规律实验研究[D]. 成都:西南石油大学, 2018. JI Jingyu. Experimental investigation on microscopic residual oil distribution mechanisms during water flooding in triassic reservoirs of TH9 Area[D]. Chengdu: Southwest Petroleum University, 2018. [7] 肖衍繁,李文斌. 物理化学[M]. 天津:天津大学出版社, 2005: 458-462. XIAO Yanfan, LI Wenbin. Physical chemistry[M]. Tianjin: Tianjin University Press, 2005: 458-462. [8] 尚朝辉. 桩西表面活性剂驱油体系的研究与应用[D]. 青岛:中国石油大学, 2006. doi: 10.7666/d.y1027994 SHANG Zhaohui. Research and application of surfactant flooding system in Zhuangxi Oilfield[D]. Qingdao: China University of Petroleum, 2006. doi: 10.7666/d.y1027994 [9] 徐典平. 杏北油田萨尔图油层提高采收率技术研究[D]. 大庆:大庆石油学院, 2007. XU Dianping. Study on enhanced oil recovery in Sa Ertu oil layer of Xingbei Oilfield[D]. Daqing: Daqing Petroleum Institute, 2007. [10] 陈兰. 界面性质在酸化添加剂中的作用及应用[D]. 青岛:中国石油大学, 2007. doi: 10.7666/d.y1214114 CHEN Lan. Effects and applications of interface properties in acidizing additives[D]. Qingdao: China University of Petroleum, 2007. doi: 10.7666/d.y1214114 [11] 马涛,邵红云,王海波,等. 无碱二元复合驱油体系室内实验研究[J]. 中国海上油气, 2008, 20(1): 41-43. doi: 10.3969/j.issn.1673-1506.2008.01.009 MA Tao, SHAO Hongyun, WANG Haibo, et al. A laboratory study of the composite twe-component oil-displacement system without alkali[J]. China Offshore Oil and Gas, 2008, 20(1): 41-43. doi: 10.3969/j.issn.1673-1506.2008.01.009 [12] 葛际江,刘海涛,张贵才,等. 聚氧丙烯壬基酚醚硫酸酯盐/碱体系与原油动态界面张力研究[J]. 西安石油大学学报(自然科学版), 2008, 23(5): 70-74. doi: 10.3969/j.issn.1673-064X.2008.05.018 GE Jijiang, LIU Haitao, ZHANG Guicai, et al. Study on the dynamic interfacial tension between crude oil and the aqueous solution of polyoxypropylated nonylphenol sodium sulfate/alkali[J]. Journal of Xi'an Shiyou University (Natural Science Edition), 2008, 23(5): 70-74. doi: 10.3969/j.issn.1673-064X.2008.05.018 [13] 黄志双. 弱碱三元复合体系性质及其影响因素[J]. 大庆石油学院学报, 2008, 32(3): 18-21. doi: 10.3969/j.issn.2095-4107.2008.03.005 HUANG Zhishuang. Analysis of influential factors of alkali ASP system property[J]. Journal of Daqing Petroleum Institute, 2008, 32(3): 18-21. doi: 10.3969/j.issn.2095-4107.2008.03.005 [14] 张晓芹,朱诗杰,施雷庭. 二元复合驱体系优化及转注时机实验研究[J]. 西南石油大学学报(自然科学版), 2019, 41(5): 120-126. doi: 10.11885/j.issn.1674-5086.2018.12.07.03 ZHANG Xiaoqin, ZHU Shijie, SHI Leiting. An experimental study on the optimization of converting time of binary combination flooding systems[J]. Journal of Southwest Petroleum University (Science & Technology Edition), 2019, 41(5): 120-126. doi: 10.11885/j.issn.1674-5086.2018.12.07.03 [15] 付美龙,周玉霞. 润湿性的改变对提高原油采收率的影响研究[J]. 石油天然气学报, 2012, 34(12): 128-132. doi: 10.3969/j.issn.1000-9752.2012.12.030 FU Meilong, ZHOU Yuxia. Influence of wettability change on enhanced oil recovery[J]. Journal of Oil and Gas Technology, 2012, 34(12): 128-132. doi: 10.3969/j.issn.1000-9752.2012.12.030 [16] 张乐. 大庆油田长垣地区润湿性研究[J]. 长江大学学报(自科版), 2014(11): 162-164. doi: 10.3969/j.issn.1673-1409(l).2014.11.050 ZHANG Le. Study on wettability of Daqing Oilfield Changyuan Area[J]. Journal of Yangtze University (Natural Science Edition), 2014(11): 162-164. doi: 10.3969/j.issn.1673-1409(l).2014.11.050 [17] 刘怀珠,李良川,孙桂玲,等. 油藏润湿性对提高原油采收率的影响[J]. 化学工程与装备, 2009, 3(10): 74-75. doi: 10.3969/j.issn.1003-0735.2009.10.026 LIU Huaizhu, LI Liangchuan, SUN Guiling, et al. Effects of reservoir wettability on enhanced oil recovery[J]. Chemical Engineering and Equipment, 2009, 3(10): 74-75. doi: 10.3969/j.issn.1003-0735.2009.10.026 [18] 孙焕泉,杨勇,王海涛,等. 特高含水油藏剩余油分布特征与提高采收率新技术[J]. 中国石油大学学报(自然科学版), 2023, 47(5): 90-102. doi: 10.3969/j.issn.1673-5005.2023.05.009 SUN Huanquan, YANG Yong, WANG Haitao, et al. Distribution characteristics of remaining oil in extra-high water cut reservoirs and new technologies for enhancing oil recovery[J]. Journal of China University of Petroleum (Edition of Natural Science), 2023, 47(5): 90-102. doi: 10.3969/j.issn.1673-5005.2023.05.009 [19] 杨庭宝,钟会影,夏惠芬,等. 基于微观渗流特征的水驱后残余油动用机理研究[J]. 油气藏评价与开发, 2020, 10(6): 46-52. doi: 10.3969/j.issn.2095-1426.2020.06.007 YANG Tingbao, ZHONG Huiying, XIA Huifen, et al. Mechanism of residual oil mobilization after water flooding based on microscopic flow characteristics[J]. Reservoir Evaluation and Development, 2020, 10(6): 46-52. doi: 10.3969/j.issn.2095-1426.2020.06.007 |