[1]袁士义,雷征东,李军诗,等. 陆相页岩油开发技术进展及规模效益开发对策思考[J]. 中国石油大学学报:自然科学版,2023,47(5):13-24.YUAN S Y,LEI Z D,LI J S,et al. Progress in technology for the development of continental shale oil and thoughts on the development of scale benefits and strategies[J]. Journal of China University of Petroleum (Natural Science Edition),2023,47(5):13-24.
[2]张福祥,李国欣,郑新权,等. 北美后页岩革命时代带来的启示[J]. 中国石油勘探,2022,27(1):26-39.ZHANG F X,LI G X,ZHENG X Q,et al. Enlightenment from the post shale revolution era in North America[J]. China Petroleum Exploration,2022,27(1):26-39.
[3]杨阳,郑兴范,肖毓祥,等. 中国石油中高成熟度页岩油勘探开发进展[J]. 中国石油勘探,2023,28(3):23-33.YANG Y,ZHENG X F,XIAO Y X,et al. Progress in exploration and development of high-mature shale oil of PetroChina[J]. China Petroleum Exploration,2023,28(3):23-33.
[4]王林生,叶义平,覃建华,等. 陆相页岩油储层微观孔喉结构表征与含油性分级评价——以准噶尔盆地吉木萨尔凹陷二叠系芦草沟组为例[J]. 石油与天然气地质,2022,43(1):149-160.WANG L S,YE Y P,QIN J H,et al. Microscopic pore structure characterization and oil-bearing property evaluation of lacustrine shale reservoir:A case study of the Permian Lucaogou Formation in Jimsar Sag,Junggar Basin[J]. Oil & Gas Geology,2022,43(1):149-160.
[5]陈轩,陶鑫,覃建华,等. 准噶尔盆地吉木萨尔凹陷及周缘二叠系芦草沟组异重流沉积[J]. 石油与天然气地质,2023,44(6):1530-1545.CHEN X,TAO X,QIN J H,et al. Hyperpycnal flow deposits of the Permian Lucaogou Formation in Jimusaer Sag and its peripheries,Junggar Basin[J].Oil & Gas Geology,2023,44(6):1530-1545.
[6]陈贺,谢文敏,袁保清,等. 录井技术组合在大港陆相页岩油勘探开发中的应用[J]. 录井工程,2020,31(S1): 37-41.CHEN H,XIE W M,YUAN B Q,et al. Application of technical combination for mud logging in the exploration and development of continental shale oil in Dagang[J]. Mud Logging Engineering,2020,31(S1): 37-41.
[7]蔚远江,王红岩,刘德勋,等. 中国陆相页岩油示范区发展现状及建设可行性评价指标体系[J]. 地球科学,2023,48(1):191-205.YU Y J,WANG H Y,LIU D X,et al. Development status and feasibility evaluation index system of continental shale oil demonstration area in China[J]. Earth Science,2023,48(1):191-205.
[8]吴宝成,吴承美,谭强,等. 准噶尔盆地吉木萨尔凹陷昌吉页岩油成藏条件及勘探开发关键技术[J]. 石油学报,2024,45(2):437-460.WU B C,WU C M,TAN Q,et al. Accumulation conditions and key technologies for exploration and development of Changji shale oil in Jimusar Sag of Junggar Basin[J]. Acta Petrolei Sinica,2024,45(2):437-460.
[9]陈希,刘蕊宁,谢勃勃,等. 考虑层理缝的页岩油藏压裂水平井产能模型[J]. 新疆石油天然气,2022,18(1):73-79.CHEN X,LIU R N,XIE B B,et al. Productivity model of fractured horizontal wells in shale oil reservoirs with bedding fractures considered[J]. Xinjiang Oil & Gas,2022,18(1):73-79.
[10]张衍君,徐树参,刘娅菲,等. 吉木萨尔页岩油压裂开发压后闷井时间优化[J]. 新疆石油天然气,2023,19(1):1-7.ZHANG Y J,XU S C,LIU Y F,et al. Optimization of well shut-in time after fracturing in Jimusar shale oil reservoirs[J]. Xinjiang Oil & Gas,2023,19(1):1-7.
[11]王小军,杨智峰,郭旭光,等. 准噶尔盆地吉木萨尔凹陷页岩油勘探实践与展望[J]. 新疆石油地质,2019,40(4):402-413.WANG X J,YANG Z F,GUO X G,et al. Practices and prospects of shale oil exploration in Jimsar Sag of Junggar Basin[J]. Xinjiang Petroleum Geology,2019,40(4):402-413.
[12]马铨峥,杨胜来,王敉邦,等. 新疆吉木萨尔凹陷致密油藏最小混相压力实验研究[J]. 辽宁石油化工大学学报,2020,40(1):35-38.MA Q Z,YANG S L,WANG M B,et al. Experimental investigation on minimum miscible pressure of the tight oil[J]. Journal of Liaoning Petrochemical University,2020,40(1): 35-38.
[13]陈志明,WEI Y,石璐铭,等. 压裂水平井的多模式裂缝网络试井模型及参数评价——以吉木萨尔页岩油为例[J]. 石油学报,2023,44(10):1706-1726.CHEN Z M,WEI Y,SHI L M,et al. Well test model and parameter evaluation of multi-mode fracture network in fractured horizontal well:A case study of Jimsar shale oil[J]. Acta Petrolei Sinica,2023,44(10):1706-1726.
[14]袁士义,王强,李军诗,等. 注气提高采收率技术进展及前景展望[J]. 石油学报,2020,41(12):1623-1632.YUAN S Y,WANG Q,LI J S,et al. Technology progress and propspects of enhanced oil recovery by gas injection[J]. Acta Petrolei Sinica,2020,41(12):1623-1632.
[15]张衍君,王鲁瑀,刘娅菲,等. 页岩油储层压裂-提采一体化研究进展与面临的挑战[J]. 石油钻探技术,2024,52(1):84-95.ZHANG Y J,WANG L Y,LIU Y F,et al. Advances and challenges of integration of fracturing and enhanced oil recovery in shale oil reservoirs[J]. Petroleum Drilling Techniques,2024,52(1):84-95.
[16]葛洪魁,陈玉琨,滕卫卫,等. 吉木萨尔页岩油微观产出机理与提高采收率方法探讨[J]. 新疆石油天然气,2021,17(3):84-90.GE H K,CHEN Y K,TENG W W,et al. Micro-mechanism of production and method of enhanced oil recovery for Jimsar shale oil[J]. Xinjiang Oil & Gas,2021,17(3):84-90.
[17]何小东,李建民,王俊超,等. 吉木萨尔凹陷页岩油高效改造理论认识、关键技术与现场实践[J]. 新疆石油天然气,2021,17(4):28-35.HE X D,LI J M,WANG J C,et al. Theoretical understanding,key technologies. and field practice of high-efficiency reservoir stimulation for shale oil in Jimsar Sag[J]. Xinjiang Oil & Gas,2021,17(4):28-35.
[18]张佳亮,葛洪魁,张衍君,等. 吉木萨尔页岩油注入介质梯级提采实验评价[J]. 石油钻采工艺,2023,45(2):244-250、258.ZHANG J L,GE H K,ZHANG Y J,et al. Experimental evaluation on EOR medium grading of shale in Jimusaer Oilfield[J]. Oil Drilling & Production Technology,2023,45(2): 244-250,258.
[19]刘治界,姜莎莎,田茂章,等. 碳酸盐岩油藏提高采收率研究的新认识:固液界面影响[J]. 中国科学:化学,2023,53(7):1257-1264.LIU Z J,JIANG S S,TIAN M Z,et al. New insights of enhancing oil recovery in carbonate reservoir:effects of solid/liquid interface[J]. Scientia Sinica Chimica,2023,53(7):1257-1264.
[20]李隆杰,朱杰,毛源. 普通稠油化学驱用表面活性剂研究[J]. 西安石油大学学报:自然科学版,2023,38(6):84-92.LI L J,ZHU J,MAO Y. Study on surfactants used in chemical flooding for common heavy oil reservoir[J]. Journal of Xi'an Shiyou University (Natural Science Edition),2023,38(6):84-92
[21]王君如,杨胜来,曹庾杰,等. 致密油岩心渗吸机理及表面活性剂提高采收率实验[J]. 科学技术与工程,2020,20(3):1044-1050.WANG J R,YANG S L,CAO Y J,et al. Imbibition mechanism of tight oil cores and experiments of surfactants enhancing oil recovery[J]. Science Technology and Engineering,2020,20(3):1044-1050.
[22]GUPTA R,MOHANTY K. Temperature effects on surfactant-aided imbibition into fractured carbonates[J]. SPE Journal,2010,15(3):588-597.
[23]WU K L,CHEN Z X,LI J,et al. Manipulating the flow of nanoconfined water by temperature stimulation[J]. Angewandte Chemie International Edition,2018,57(28):8432-8437.
[24]AHMADI S,HOSSEINI M,TANGESTANI E,et al. Wettability alteration and oil recovery by spontaneous imbibition of smart water and surfactants into carbonates[J]. Petroleum Science,2020,17(3):712-721.
[25]HOU B F,ZHANG F M,WANG S,et al. Mechanisms of spontaneous imbibition and wettability reversal of sandstone cores by a novel imbibition agent[J]. Energy & Fuels,2022,36(3):1316-1325.
[26]SHENG M H,GUAN J,CHUN G,et al. Experimental study of adsorption/desorption and enhanced recovery of shale oil and gas by zwitterionic surfactants[J]. Chemical Engineering Journal,2024,487:150628.
[27]FENG H S,KANG W L,ZHANG L M,et al. Experimental study on a fine emulsion flooding system to enhance oil recovery for low permeability reservoirs[J]. Journal of Petroleum Science and Engineering,2018,171:974-981.
[28]AZAD M S,PATEL V,SHAH N,et al. Extensional rheological measurements of surfactant-polymer mixtures[J]. ACS Omega,2020,5(48):30787-30798.
[29]EMADI S,SHADIZADEH S R,MANSHAD A K,et al. Effect of nano silica particles on Interfacial Tension (IFT) and mobility control of natural surfactant (Cedr Extraction) solution in enhanced oil recovery process by nano-surfactant flooding[J]. Journal of Molecular Liquids,2017,248:163-167.
[30]LU H,XU X,XIE L S,et al. Deformation and crawling of oil drop on solid substrates by shearing liquid[J]. Chemical Engineering Science,2019,195:720-729.
[31]VAREL F T,DAI C L,SHAIKH A,et al. Chromatography and oil displacement mechanism of a dispersed particle gel strengthened alkali/surfactant/polymer combination flooding system for enhanced oil recovery[J]. Colloids and Surfaces A:Physicochemical and Engineering Aspects,2021,610:125642.
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