[1] U.S Energy Information Administration.Technically recoverable shale oil and shale gas resources:an assessment of 137 shale formations in 41 countries outside the United States[N].U.S Energy Information Administration,2013-06-10(13).
[2] 王成俊,洪玲,高瑞民,等.低渗透油藏提高采收率技术现状与挑战[J].非常规油气,2018,5(3):102-108.
WANG Chengjun,HONG Ling,GAO Ruimin,et al.Status-quo and challenges of enhanced oil recovery in low permeability reservoirs[J].Unconventional Oil & Gas,2018,5(3):102-108.
[3] 胡文瑞.中国低渗透油气的现状与未来[J].中国工程科学,2009,11(8):29-37.
HU Wenrui.The present and future of low permeability oil and gas in China[J].Strategic Study of CAE,2009,11(8):29-37.
[4] 李道品.低渗透油田高效开发决策论[M].北京:石油工业出版社,2003:3-8.
LI Daopin.Decision theory of efficient development in low permeability oilfield[M].Beijing:Petroleum Industry Press,2003:3-8.
[5] 达引朋,陆红军,杨博丽,等.低渗透老油田新型多缝重复压裂技术研究与应用[J].石油钻探技术,2015,43(3):65-70.
DA Yinpeng,LU Hongjun,YANG Boli,et al.Research and application of new refracturing technology in low permeability oilfield[J].Petroleum Drilling Techniques,2015,43(3):65-70.
[6] 孟凡坤,苏玉亮,鲁明晶,等.长6特低渗透储层重复压裂复杂缝网参数优化[J].石油钻采工艺,2015,37(4):87-91.
MENG Fankun,SU Yuliang,LU Mingjing,et al.Parameters optimization of complex fracture network under repeated fracturing for Chang 6 ultra-low-permeability oil reservoir[J].Oil Drilling & Production Technology,2015,37(4):87-91.
[7] 李玮,纪照生.暂堵转向压裂机理有限元分析[J].断块油气田,2016,23(4):514-517.
LI Wei,JI Zhaosheng.Finite element analysis of temporary plugging and fracturing mechanism[J].Fault-Block Oil & Gas Field,2016,23(4):514-517.
[8] 周丹,熊旭东,何军榜,等.低渗透储层多级转向压裂技术[J].石油钻探技术,2020,48(1):85-89.
ZHOU Dan,XIONG Xudong,HE Junbang,et al.Multi-stage deflective fracturing technology for low permeability reservoir[J].Petroleum Drilling Techniques,2020,48(1):85-89.
[9] 侯志.低渗透油藏聚合物驱注入性以及有效性研究[D].成都:西南石油大学,2018.
HOU Zhi.Study on the injection and effectiveness of polymer flooding in low permeability reservoirs[D].Chengdu:Southwest Petroleum University,2018.
[10] 王国锋.低渗透油层低黏度聚驱微观剩余油动用机理[J].断块油气田,2018,25(6):776-780.
WANG Guofeng.Microscopic residual oil utilization mechanism of low viscosity polymer flooding in low permeability reservoir[J].Fault-Block Oil & Gas Field,2018,25(6):776-780.
[11] 关丹,娄清香,任豪,等.七东1低渗砾岩油藏聚合物驱配方设计及应用[J].油田化学,2020,37(2):287-291.
GUAN Dan,LOU Qingxiang,REN Hao,et al.Formula design and application of polymer flooding in Qidong 1 conglomerate reservoir with low permeability[J].Oilfield Chemistry,2020,37(2):287-291.
[12] 李丹丹.低渗透油藏驱油用聚合物相对分子质量的确定方法研究[D].青岛:中国石油大学(华东),2014.
LI Dandan.Research progress of determination of polymer molecular weight for oil recovery in low permeability reservoirs[D].Qingdao:China University of Petroleum(East China),2014.
[13] 张莉,张峰,许关利.二元复合驱在江苏沙7低渗透油藏的研究与应用[J].石油地质与工程,2015,29(1):128-130.
ZHANG Li,ZHANG Feng,XU Guanli.Research and application of binary compound flooding in Jiangsu Sha-7 low permeability reservoirs[J].Petroleum Geology & Engineering,2015,29(1):128-130.
[14] 彭颖锋.PGL区块特低渗裂缝性油藏二元驱可行性实验研究[D].成都:西南石油大学,2015.
PENG Yingfeng.Experimental study on the feasibility of binary flooding for extra low permeability fractured reservoirs in PGL Block[D].Chengdu:Southwest Petroleum University,2015.
[15] 刘晨,李竞,王凯,等.低渗油藏二元复合驱协同机理研究[J].石油化工应用,2020,39(9):25-29.
LIU Chen,LI Jing,WANG Kai,et al.Study on mechanism of binary compound flooding in low permeability reservoir[J].Petrochemical Industry Application,2020,39(9):25-29.
[16] 张相春,孙卫,王德玉,等.低渗透油田微生物驱油规律及其影响因素[J].西北大学学报(自然科学版),2014,44(5):801-807.
ZHANG Xiangchun,SUN Wei,WANG Deyu,et al.Displacing law and influencing factors of MEOR in low-permeability oilfields[J].Journal of Northwest University(Natural Science Edition),2014,44(5):801-807.
[17] 吴迪.低渗透油田微生物代谢产物驱油技术研究[D].大庆:东北石油大学,2017.
WU Di.Research on oil flooding technology of microbial metabolites in low permeability oilfield[D].Daqing:Northeast Petroleum University,2017.
[18] 杨剑,李斌,白玉军,等.“聚合物微球+微生物”联合调驱技术[J].大庆石油地质与开发,2017,36(1):114-118.
YANG Jian,LI Bin,BAI Yujun,et al.Profile control and flooding technique by the polymer microsphere and microbes[J].Petroleum Geology & Oilfield Development in Daqing,2017,36(1):114-118.
[19] 李元龙,李宁英,李阳,等.低渗透砂岩油藏微生物驱油机理及效果评价[J].石油化工应用,2021,40(12):79-83.
LI Yuanlong,LI Ningying,LI Yang,et al.Evaluation of microbial oil flooding mechanism and effectiveness in low permeability sandstone reservoirs[J].Petrochemical Industry Application,2021,40(12):79-83.
[20] 桑海波.裂缝性低渗透油藏弱凝胶调剖主控因素及其影响规律研究[D].青岛:中国石油大学(华东),2016.
SANG Haibo.Study on the main control factors of weak gel profile control in fractured low-permeability reservoirs and its influence law[D].Qingdao:China University of Petroleum(East China),2016.
[21] 陈佳,王健,倪聪,等.D26油藏复合调剖体系研制与评价[J].油气藏评价与开发,2016,6(5):44-48.
CHEN Jia,WANG Jian,NI Cong,et al.Compound profile control technology and evaluation in D26 reservoir[J].Reservoir Evaluation and Development,2016,6(5):44-48.
[22] 张脊,宋欢,卢祥国,等.大庆头台低渗透油藏液流转向剂筛选及其增油效果评价[J].大庆石油地质与开发,2017,36(3):93-99.
ZHANG Ji,SONG Huan,LU Xiangguo,et al.Screening and oil incremental effects of the fluid diverting agent for the low-permeability reservoirs in Daqing Toutai Oilfield[J].Petroleum Geology & Oilfield Development in Daqing,2017,36(3):93-99.
[23] 宋欢,张脊,卢祥国,等.低渗透油藏液流转向剂传输运移能力与驱油效率[J].大庆石油地质与开发,2017,36(4):116-122.
SONG Huan,ZHANG Ji,LU Xiangguo,et al.Transporting-migrating capacities and oil displaced efficiency for the fluid diverting agent in the low-permeability reservoirs[J].Petroleum Geology & Oilfield Development in Daqing,2017,36(4):116-122.
[24] 张方.低渗透油藏纳微米聚合物微球深部调驱技术应用研究[D].西安:西安石油大学,2019.
ZHANG Fang.Application of deep flooding control technology of nano-micron polymer microspheres in low permeability reservoirs[D].Xi′an:Xi′an Petroleum University,2019.
[25] 赵文景.纳米聚合物微球动态运移机理研究[D].西安:西安石油大学,2020.
ZHAO Wenjing.Study of dynamic transport mechanism of nano-polymer microspheres[D].Xi′an:Xi′an Petroleum University,2020.
[26] 张金元.不同渗透率级差下聚合物微球调驱室内实验研究[J].石油工业技术监督,2020,36(9):1-5.
ZHANG Jinyuan.Laboratory study on polymer microsphere profile control and flooding under different permeability gradient[J].Technology Supervision in Petroleum Industry Journal Agency,2020,36(9):1-5.
[27] 杨长春,岳湘安,周代余,等.耐温耐盐聚合物微球性能评价[J].油田化学,2016,33(2):254-260.
YANG Changchun,YUE Xiang′an,ZHOU Daiyu,et al.Performa nce evaluation of polymer microsphere with high temperature resistance and high salinity tolerance[J].Oilfield Chemistry,2016,33(2):254-260.
[28] 祝仰文,孟红丽,马宝东,等.低渗透油藏表面活性剂降压增注效果影响因素[J].油气地质与采收率,2016,23(1):74-78.
ZHU Yangwen,MENG Hongli,MA Baodong,et al.Factors effecting decompression and augmented injection by surfactant in low permeability reservoir[J].Petroleum Geology and Recovery Efficiency,2016,23(1):74-78.
[29] 邓永刚.低渗透油田驱油剂的开发与应用[D].西安:西安石油大学,2016.
DENG Yonggang.Development and application of oil-displacing agent for low permeability oilfields[D].Xi′an:Xi′an Petroleum University,2016.
[30] 董杰,岳湘安,孔彬,等.表面活性剂乳化能力差异对低渗油藏提高采收率的影响[J].石油与天然气化工,2018,47(2):80-84.
DONG Jie,YUE Xiang′an,KONG Bin,et al.Influence of different emulsifying ability of surfactants on recovery efficiency of low permeability reservoirs[J].Chemical Engineering of Oil & Gas,2018,47(2):80-84.
[31] 王成俊.特低渗油藏表面活性剂驱适应性评价及应用基础研究[D].西安:陕西科技大学,2018.
WANG Chengjun.Evaluation of surfactant flooding adaptability and basic research of application in ultra-low permeability reservoirs[D].Xi′an:Shaanxi University of Science and Technology,2018.
[32] 赵继勇,熊维亮,范伟,等.特低渗透储层提高采收率驱油体系筛选及应用[J].新疆石油地质,2019,40(6):720-724.
ZHAO Jiyong,XIONG Weiliang,FAN Wei,et al.Screening and application of enhanced oil recovery flooding system for ultra-low permeability reservoirs[J].Xinjiang Petroleum Geology,2019,40(6):720-724.
[33] 巩象珠.低渗透油藏表面活性剂微乳液驱数值模拟理论研究[D].大庆:东北石油大学,2017.
GONG Xiangzhu.Numerical simulation theory of surfactant microemulsion flooding in low permeability reservoirs[D].Daqing:Northeast Petroleum University,2017.
[34] 殷代印,项俊辉,房雨佳.低渗透油藏微乳液驱微观剩余油驱替机理研究[J].特种油气藏,2017,24(5):136-140.
YIN Daiyin,XIANG Junhui,FANG Yujia.Study on microemulsion flooding mechanism for the residual oil in low-permeability reservoirs[J].Special Oil & Gas Reservoirs,2017,24(5):136-140.
[35] 赵福麟.EOR原理[M].东营:中国石油大学出版社,2006:86.
ZHAO Fulin.EOR principle[M].Dongying:China University of Petroleum Press,2006:86.
[36] 刘祖鹏,李宾飞,赵方剑.低渗透油藏CO2泡沫驱室内评价及数值模拟研究[J].石油与天然气化工,2015,44(1):70-74.
LIU Zupeng,LI Binfei,ZHAO Fangjian.Indoor evaluation and numerical simulation research of CO2 foam flooding in low permeability reservoirs[J].Chemical Engineering of Oil & Gas,2015,44(1):70-74.
[37] 赵金省,李攀,杜剑平.超低渗透储层空气泡沫驱油效率研究[J].石油与天然气化工,2017,46(1):63-66.
ZHAO Jinsheng,LI Pan,DU Jianping.Experimental study on displacement efficiency of air foam flooding in ultra-low permeability reservoir[J].Chemical Engineering of Oil & Gas,2017,46(1):63-66.
[38] 赵磊.低渗透油藏氮气泡沫驱油实验研究[D].成都:西南石油大学,2017.
ZHAO Lei.Experimental study on nitrogen foam oil flooding in low permeability reservoir[D].Chengdu:Southwest Petroleum University,2017.
[39] 邹高峰.低渗透油藏CO2泡沫驱提高采收率机理研究[D].成都:西南石油大学,2018.
ZOU Gaofeng.Study on the mechanism of recovery enhancement by CO2 foam flooding in low permeability reservoirs[D].Chengdu:Southwest Petroleum University,2018.
[40] 陈乐乐.QKX油藏空气泡沫驱提高采收率研究[D].北京:中国石油大学(北京),2020.
CHEN Lele.Study on recovery enhancement by air foam flooding in QKX reservoir[D].Beijing:China University of Petroleum(Beijing),2020.
[41] 袁俊秀,王康.纳米乳液驱油体系性能评价及驱油机理分析[J].能源化工,2016,37(3):47-49.
YUAN Junxiu,WANG Kang.Performance evaluation and mechanism analysis of nano emulsion flooding system[J].Energy Chemical Industry,2016,37(3):47-49.
[42] 周勤.低渗透油藏纳米乳液降压增注研究[J].油气藏评价与开发,2016,6(6):61-66.
ZHOU Qin.The research on decompression and injection stimulation of nanometer emulsion in low permeability reservoir[J].Reservoir Evaluation and Development,2016,6(6):61-66.
[43] 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.
[44] 尚丹森,侯吉瑞,程婷婷.SiO2纳米流体在低渗透油藏中的驱油性能和注入参数优化[J].油田化学,2021,38(1):1-9.
SHANG Dansen,HOU Jirui,CHENG Tingting.Flooding performance and optimization of injection parameters of SiO2 nanofluid in low permeability reservoirs[J].Oilfield Chemistry,2021,38(1):1-9.
[45] 冯晓羽.驱油用纳米TiO2的改性及其在低渗透油藏中的适应性研究[D].北京:中国石油大学(北京),2019.
FENG Xiaoyu.Modification of nano-TiO2 for oil flooding and its adaptability in low permeability reservoirs[D].Beijing:China University of Petroleum(Beijing),2019.
[46] 谢坤,卢祥国,陈欣,等.高温低渗油藏中表面活性剂溶液渗吸效果影响因素研究[J].西安石油大学学报(自然科学版),2015,30(5):80-84.
XIE Kun, LU Xiangguo,CHEN Xin,et al.Study of factors influencing the percolation effect of surfactant solutions in high temperature and low permeability reservoirs[J].Journal of Xi′an Shiyou University(Natural Science),2015,30(5):80-84.
[47] 焦石磊.低/特低渗透储层表面活性剂驱适应性评价[D].北京:中国石油大学(北京),2016.
JIAO Shilei.Evaluation of surfactant flooding adaptability in low/extra-low permeability reservoirs[D].Beijing:China University of Petroleum(Beijing),2016.
[48] 王桂娟.低渗透砂岩油藏渗吸规律及特征研究[D].青岛:中国石油大学(华东),2016.
WANG Guijuan.Study on the imbibition laws and characteristics of low-permeability sandstone reservoirs[D].Qingdao:China University of Petroleum(East China),2016.
[49] 李洪,李治平,王香增,等.表面活性剂对低渗透油藏渗吸敏感因素的影响[J].石油钻探技术,2016,44(5):100-103.
LI Hong,LI Zhiping,WANG Xiangzeng,et al.The effect of surfactants on imbibition-sensitive factors of low-permeability reservoirs[J].Petroleum Drilling Techniques,2016,44(5):100-103.
[50] 党海龙,王小锋,段伟,等.鄂尔多斯盆地裂缝性低渗透油藏渗吸驱油研究[J].断块油气田,2017,24(5):687-690.
DANG Hailong,WANG Xiaofeng,DUAN Wei,et al.Study on imbibition flooding in fractured low-permeability reservoir of Ordos Basin[J].Fault-Block Oil & Gas Field,2017,24(5):687-690.
[51] 王高峰,郑雄杰,张玉,等.适合二氧化碳驱的低渗透油藏筛选方法[J].石油勘探与开发,2015,42(3):358-363.
WANG Gaofeng,ZHENG Xiongjie,ZHANG Yu,et al.A new screening method of low permeability reservoirs suitable for CO2 flooding[J].Petroleum Exploration and Development,2015,42(3):358-363.
[52] 伦增珉,王锐,吕成远,等.低渗透油藏二氧化碳驱修正毛管数理论及参数优化[J].油气地质与采收率,2016,23(2):83-86,92.
LUN Zengmin,WANG Rui,LYU Chengyuan,et al.Study on modified capillary number theory and its application in parameter optimization of CO2 flooding in low permeability reservoirs[J].Petroleum Geology and Recovery Efficiency,2016,23(2):83-86,92.
[53] 袁少民.特低渗透储层CO2驱油调整技术界限[J].大庆石油地质与开发,2019,38(4):117-123.
YUAN Shaomin.Technical limits for the adjustment of the CO2 flooding in ultra-low permeability oil reservoirs[J].Petroleum Geology & Oilfield Development in Daqing,2019,38(4):117-123.
[54] 王微.低渗透油藏CO2驱油机理及其适应性研究[D].西安:西安石油大学,2018.
WANG Wei.Study on the mechanism of CO2 oil flooding and its adaptability in low permeability reservoirs[D].Xi′an:Xi′an Petroleum University,2018.
[55] 张海龙.CO2混相驱提高石油采收率实践与认识[J].大庆石油地质与开发,2020,39(2):114-119.
ZHANG Hailong.Practice and understanding of enhancing the oil recovery by CO2 miscible flooding[J].Petroleum Geology & Oilfield Development in Daqing,2020,39(2):114-119.
[56] 程杰成,刘春林,汪艳勇,等.特低渗透储层二氧化碳近混相驱实验研究[J].特种油气藏,2016,23(6):64-67.
CHENG Jiecheng,LIU Chunlin,WANG Yanyong,et al.Experim
ental study of CO2 near-miscible flooding in ultra-low permeability reservoirs[J].Special Oil & Gas Reservoirs,2016,23(6):64-67.
[57] 赵凤兰,张蒙,侯吉瑞,等.低渗透油藏CO2混相条件及近混相驱区域确定[J].油田化学,2018,35(2):273-277.
ZHAO Fenglan,ZHANG Meng,HOU Jirui,et al.Determination of CO2 miscible condition and near-miscible region flooding in low permeability reservoir[J].Oilfield Chemistry,2018,35(2):273-277.
[58] 王建波,高云丛,宗畅,等.特低渗油藏CO2非混相驱水气交替注入见效特征[J].大庆石油地质与开发,2016,35(2):116-120.
WANG Jianbo,GAO Yuncong,ZONG Chang,et al.Response characteristics of CO2-immiscible-flooding wag in the ultra-low permeability oil reservoirs[J].Petroleum Geology & Oilfield Development in Daqing,2016,35(2):116-120.
[59] 雷欣慧,郑自刚,余光明,等.特低渗油藏水驱后二氧化碳气水交替驱见效特征[J].特种油气藏,2020,27(5):113-117.
LEI Xinhui,ZHENG Zigang,YU Guangming,et al.Response characteristics of gas-water alternate flooding with CO2 after water flooding in ultra-low permeability reservoirs[J].Special Oil & Gas Reservoirs,2020,27(5):113-117.
[60] 孙丽丽,李治平,窦宏恩,等.超低渗油藏CO2吞吐室内评价及参数优化[J].油田化学,2018,35(2):268-272.
SUN Lili,LI Zhiping,DOU Hongen,et al.Laboratory evaluation and parameter optimization of CO2 huff-n-puff in ultra-low permeability reservoirs[J].Oilfield Chemistry,2018,35(2):268-272.
[61] 钱坤,杨胜来,马轩,等.超低渗透储层CO2吞吐利用率实验研究[J].石油钻探技术,2018,46(6):77-81.
QIAN Kun,YANG Shenglai,MA Xuan,et al.Experimental study on CO2 huff-n-puff utilization rate in ultra-low permeability reservoirs[J].Petroleum Drilling Techniques,2018,46(6):77-81.
[62] 江绍静,王维波,黄春霞,等.改性淀粉凝胶体系控制二氧化碳窜逸技术研究[J].特种油气藏,2016,23(4):136-139,158.
JIANG Shaojing,WANG Weibo,HUANG Chunxia,et al.Research on carbon dioxide channeling control technology for modified starch gel system[J].Special Oil & Gas Reservoirs,2016,23(4):136-139,158.
[63] 李宛珊,王健,任振宇,等.低渗透油藏二氧化碳气溶性泡沫控制气窜实验研究[J].特种油气藏,2019,26(5):136-141.
LI Wanshan,WANG Jian,REN Zhenyu,et al.Gas-channeling control experiment with carbon dioxide gas-soluble foam in low-permeability oil reservoir[J].Special oil & gas reservoirs,2019,26(5):136-141.
[64] 王董东.SS低渗透油藏N2驱注采参数优化研究[D].成都:西南石油大学,2017.
WANG Dongdong.Optimization of N2 flooding injection and recovery parameters in SS low permeability reservoir[D].Chengdu:Southwest Petroleum University,2017.
[65] 徐勇.低渗透油藏注CO2和N2驱油效果研究[D].大庆:东北石油大学,2018.
XU Yong.Study on the effect of CO2 and N2 injection for oil flooding in low permeability reservoir[D].Daqing:Northeast Petroleum University,2018.
[66] 王选涛,王海华,李秉路,等.超低渗透储层N2吞吐提高采收率影响因素[J].西安石油大学学报(自然科学版),2020,35(6):60-64.
WANG Xuantao,WANG Haihua,LI Binglu,et al.Factors of influencing enhanced oil recovery of N2 huff-puff in ultra-low permeability oil reservoir[J].Journal of Xi′an Shiyou University(Natural Science),2020,35(6):60-64.
[67] 陈涛平,毕佳琪,孙文,等.低渗特低渗油层富气-氮气复合驱[J].东北石油大学学报,2020,44(4):40-47.
CHEN Taoping,BI Jiaqi,SUN Wen,et al.Rich gas/nitrogen composite flooding for low and ultra-low permeability reservoirs[J].Journal of Northeast Petroleum University,2020,44(4):40-47.
[68] 赵斌.低渗透油层二氧化碳和氮气复合驱研究[D].大庆:东北石油大学,2019.
ZHAO Bin.Study of CO2 and nitrogen composite flooding in low permeability reservoirs[D].Daqing:Northeast Petroleum University,2019.
[69] 陈涛平,赵斌,贺如.特低渗透油层CO2与N2驱替方式[J].大庆石油地质与开发,2018,37(4):127-132.
CHEN Taoping,ZHAO Bin,HE Ru.CO2 and N2 flooding methods in ultra-low permeability oil reservoir[J].Petroleum Geology & Oilfield Development in Daqing,2018,37(4):127-132.
[70] 张红.低渗稀油油藏注空气驱替机理及加速氧化技术[D].青岛:中国石油大学(华东),2016.
ZHANG Hong.Air injection displacement mechanism and accelerated oxidation technology for low permeability thin oil reservoirs[D].Qingdao:China University of Petroleum(East China),2016.
[71] 庄园.超低渗油藏注减氧空气驱油机理研究[D].青岛:中国石油大学(华东),2017.
ZHUANG Yuan.Study on the mechanism of oil flooding by oxygen-reduced air injection in ultra-low permeability reservoir[D].Qingdao:China University of Petroleum(East China),2017.
[72] 廖广志,杨怀军,蒋有伟,等.减氧空气驱适用范围及氧含量界限[J].石油勘探与开发,2018,45(1):105-110.
LIAO Guangzhi,YANG Huaijun,JIANG Youwei,et al.Applicable scope of oxygen-reduced air flooding and the limit of oxygen content[J].Petroleum Exploration and Development,2018,45(1):105-110.
[73] 崔传智,曾昕,杨勇,等.氮气吞吐式次生气顶形成条件及其影响因素 [J].油气地质与采收率,2019,26(5):96-101.
CUI Chuanzhi,ZENG Xin,YANG Yong,et al.Formation conditions and influencing factors of secondary gas cap under nitrogen huff and puff technique[J].Petroleum Geology and Recovery Efficiency,2019,26(5):96-101.
[74] 陈涛平,毕佳琪,孙文,等. 低渗特低渗油层富气—氮气复合驱[J]. 东北石油大学学报,2020,44(4):40-47.
CHEN Taoping, BI Jiaqi, SUN Wen, et al. Rich gas-nitrogen compound flooding in low and ultra-low permeability layers[J]. Journal of Northeast Petroleum University,2020,44(4):40-47.
[75] 赵凤兰,宋黎光,侯吉瑞,等.浅层边水断块油藏氮气复合吞吐实验[J].油气地质与采收率,2019,26(3):85-91.
ZHAO Fenglan,SONG Liguang,HOU Jirui,et al.Experiment of nitrogen compound huff and puff for fault-block reservoirs with shallow edge water[J].Petroleum Geology and Recovery Efficiency,2019,26(3):85-91.
[76] 陈园园,刘学利,杨占红,等.塔河碳酸盐岩缝洞型油藏注氮气效果评价[J].石油地质与工程,2021,35(1):82-86.
CHEN Yuanyuan,LIU Xueli YANG Zhanhong,et al.Effect evaluation of nitrogen injection in Tahe carbonate fractured vuggy reservoir[J]. Petroleum Geology & Engineering, 2021, 35(1): 82-86.
[77] 马兵兵,白伟龙,肖梦华,等. 高孔渗强边水小规模砂岩油藏氮气人工气顶驱油矿场试验[J].石油地质与工程,2020,34(5):69-73.
MA Bingbing ,BAI Weilong,XIAO Menghua,et al. Field test of nitrogen artificial gas cap oil displacement in the small-scale sandstone reservoir with high porosity, high permeability and strong edge water [J]. Petroleum Geology & Engineering, 2020, 34(5): 69-73.