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朱维耀等:中国致密油藏开发理论研究进展 ·1111· 参考文献 [12]Ren Y,Cao H,Yao F C,et al.Brittleness and fracability pre- [1]Tong X G,Zhang G Y,Wang Z M,et al.Distribution and poten- diction for tight oil reservoir in Jimsar Sag,Junggar Basin.Oil tial of global oil and gas resources.Petrol Explor Der,2018.45 Geophys Prosp,2018,53(3):511 (4):727 (任岩,曹宏,姚逢昌,等.吉木萨尔致密油储层脆性及可压 (童晓光,张光亚,王兆明,等.全球油气资源潜力与分布. 裂性预测.石油地球物理勘探,2018,53(3):511) 石油勘探与开发,2018,45(4):727) [13]Fan J M.Yang Z Q,Li W B,et al.Assessment of fracturing [2]BP Group.Statistical Reviee of World Energy 2018 [R/OL].ht- treatment of horizontal wells using SRV technique for Chang-7 tps://www.bp.com/en/global/corporate/energy-cconomics/sta- tight oil reservoir in Ordos Basin.J China Univ Petrol Ed Nat tistical-review-of-world-energy/downloads.html Sc,2015,39(4):103 [3]Zhang J F,Bi H B,Xu H,et al.New progress and reference sig- (樊建明,杨子清,李卫兵,等.鄂尔多斯盆地长7致密油水 nificance of overseas tight oil exploration and development.Acta 平井体积压裂开发效果评价及认识.中国石油大学学报:自 Petrol Sin,2015,36(2):127 然科学版,2015,39(4):103) (张君峰,毕海滨,许浩,等.国外致密油勘探开发新进展及 [14]Guo JC.Tao L,Zeng F H.Optimization of refracturing timing 借鉴意义.石油学报,2015,36(2):127) for horizontal wells in tight oil reservoirs:a case study of Creta- [4]Zou C N,Zhu R K,Bai B,et al.Significance,geologic charac- ceous Qingshankou Formation,Songliao Basin,NE China.Petrol teristies,resource potential and future challenges of tight oil and Explor Dev,2019,46(1):146 shale oil.Bull Mineral Petrol Geochem,2015,34(1):3 (郭建春,陶亮,曾凡辉.致密油储集层水平井重复压裂时 (邹才能,朱如凯,白斌,等.致密油与页岩油内涵、特征、潜 机优化一以松辽盆地白垩系青山口组为例.石油勘探与开 力及挑战.矿物岩石地球化学通报,2015,34(1):3) 发.2019,46(1):146) [5]Du J H,Liu H,Ma D S,et al.Discussion on effective develop- [15]Yassin M R,Habibi A,Zolfaghari A,et al.An experimental ment techniques for continental tight oil in China.Petrol Explor study of nonequilibrium carbon dioxide/oil interactions.SPE, Dem,2014,41(2):198 2018,23(5):1768 (杜金虎,刘合,马德胜,等.试论中国陆相致密油有效开发 [16]Dong P F,Puerto M,Jian G Q,et al.Low-IFT foaming system 技术.石油勘探与开发,2014,41(2):198) for enhanced oil recovery in highly heterogeneous/fractured oil- [6]Hu S Y,Zhu R K,Wu S T,et al.The exploration and develop- wet carbonate reservoirs.SPE /2018,23(6):2243 ment of continental tight oil in China under the background of low [17]Huang D Z,Xiang D,Wang C S.A feasibility analysis of water- oil price.Petrol Explor Dev,2018,45(4):1 flood swallowing-spitting oil production.Drill Prod Technol, (胡素云,朱如凯,吴松涛,等.低油价背景下中国陆相致密 2003,26(4):17 油的效益脚探开发.石油勘探与开发,2018,45(4):1) (黄大志,向丹,王成善.油田注水吞吐采油的可行性分析 [7]Zhu X M,Pan R,Zhu S F,et al.Research progress and core is- 钻采工艺,2003,26(4):17) sues in tight reservoir exploration.Earth Sci Front,2018,25(2): [18]Tao D H,Zhan X H.Gao J W,et al.Study and practice of cy- 141 clic water injection in Mazhong tight oil reservoir in the Santanghu (朱筱敏,潘荣,朱世发,等.致密储层研究进展和热点问题 Basin.Oil Drill Prod Technol,2018,40(5):614 分析.地学前缘,2018,25(2):141) (陶登海,詹雪函,高数文,等.三塘湖盆地马中致密油藏注 [8]Jia CZ,Zou C N,LiJZ,et al.Assessment criteria,main types, 水吞吐探索与实践.石油钻采工艺,2018,40(5):614) basic features and resource prospeets of the tight oil in China.Aca [19]Wang X Z.Dang HL.Gao T.Method of moderate water injec- Petrol Sin,2012.33(3):343 tion and its application in ultra-low permeability oil reservoirs of (贾承造,邹才能,李建忠,等。中国致密油评价标准,主要类 Yanchang Oilfield,NW China.Petrol Explor Dev,2018,45 型,基本特征及资源前景.石油学报,2012,33(3):343) (6):1026 [9]Qu JX,Ding X J,Zha M,et al.Geochemical characterization of (王香增,党海龙,高涛.延长油田特低渗油藏适度温和注 Lucaogou formation and its correlation of tight oil accumulation in 水方法与应用.石油脚探与开发,2018,45(6):1026) Jimsar Sag of Junggar Basin,Northwestem China.J Petrol Explor [20]Zhao L J.Applications of oil producing technology of huff and Prod Technol,2017,7(3):699 puff infection of microbe in low permeable oilfields.Petrol Drill [10]Xu Z J,Liu L F,Wang T G,et al.Characteristics and control- Tech,2005,33(3):61 ling factors of lacustrine tight oil reservoirs of the Triassic Yan- (赵丽娟.微生物采油技术在低渗透油田的应用.石油钻探 chang Formation Chang 7 in the Ordos Basin,China.Marine 技术,2005,33(3):61) Petrol Geol,2017,82:265 [21]Kumar V,Paraschivoiu M,Nigam K D P.Single-phase fluid [11]Huang D,Yang G,Wei T Q,et al.Recognition of high yield flow and mixing in microchannels.Chem Eng Sci,2011,66 and stable yield factors of Daanzhai tight oil,Guihua oilfield.J (7):1329 Southucest Petrol Univ Sci Technol Ed,2015,37(5):23 [22]Kandlikar S G.Fundamental issues related to flow boiling in (黄东,杨光,韦腾强,等.川中桂花油田大安寨段致密油高 minichannels and microchannels.Exp Therm Fluid Sci,2002, 产稳产再认识.西南石油大学学报:自然科学版),2015,37 26(24):389 (5):23) [23]Li Y,Lei Q,Liu X G,et al.Characteristics of micro scale non-朱维耀等: 中国致密油藏开发理论研究进展 参 考 文 献 [1] Tong X G, Zhang G Y, Wang Z M, et al. Distribution and poten鄄 tial of global oil and gas resources. Petrol Explor Dev, 2018, 45 (4): 727 (童晓光, 张光亚, 王兆明, 等. 全球油气资源潜力与分布. 石油勘探与开发, 2018, 45(4): 727) [2] BP Group. Statistical Review of World Energy 2018 [R/ OL]. ht鄄 tps: / / www. bp. com/ en / global / corporate / energy鄄economics/ sta鄄 tistical鄄review鄄of鄄world鄄energy / downloads. html [3] Zhang J F, Bi H B, Xu H, et al. New progress and reference sig鄄 nificance of overseas tight oil exploration and development. Acta Petrol Sin, 2015, 36(2): 127 (张君峰, 毕海滨, 许浩, 等. 国外致密油勘探开发新进展及 借鉴意义. 石油学报, 2015, 36(2): 127) [4] Zou C N, Zhu R K, Bai B, et al. Significance, geologic charac鄄 teristics, resource potential and future challenges of tight oil and shale oil. Bull Mineral Petrol Geochem, 2015, 34(1): 3 (邹才能, 朱如凯, 白斌, 等. 致密油与页岩油内涵、特征、潜 力及挑战. 矿物岩石地球化学通报, 2015, 34(1): 3) [5] Du J H, Liu H, Ma D S, et al. Discussion on effective develop鄄 ment techniques for continental tight oil in China. Petrol Explor Dev, 2014, 41(2): 198 (杜金虎, 刘合, 马德胜, 等. 试论中国陆相致密油有效开发 技术. 石油勘探与开发, 2014, 41(2): 198) [6] Hu S Y, Zhu R K, Wu S T, et al. The exploration and develop鄄 ment of continental tight oil in China under the background of low oil price. Petrol Explor Dev, 2018, 45(4): 1 (胡素云, 朱如凯, 吴松涛, 等. 低油价背景下中国陆相致密 油的效益勘探开发. 石油勘探与开发, 2018, 45(4): 1) [7] Zhu X M, Pan R, Zhu S F, et al. Research progress and core is鄄 sues in tight reservoir exploration. Earth Sci Front, 2018, 25(2): 141 (朱筱敏, 潘荣, 朱世发, 等. 致密储层研究进展和热点问题 分析. 地学前缘, 2018, 25(2): 141) [8] Jia C Z, Zou C N, Li J Z, et al. Assessment criteria, main types, basic features and resource prospects of the tight oil in China. Acta Petrol Sin, 2012, 33(3): 343 (贾承造, 邹才能, 李建忠, 等. 中国致密油评价标准、主要类 型、基本特征及资源前景. 石油学报, 2012, 33(3): 343) [9] Qu J X, Ding X J, Zha M, et al. Geochemical characterization of Lucaogou formation and its correlation of tight oil accumulation in Jimsar Sag of Junggar Basin, Northwestern China. J Petrol Explor Prod Technol, 2017, 7(3): 699 [10] Xu Z J, Liu L F, Wang T G, et al. Characteristics and control鄄 ling factors of lacustrine tight oil reservoirs of the Triassic Yan鄄 chang Formation Chang 7 in the Ordos Basin, China. Marine Petrol Geol, 2017, 82: 265 [11] Huang D, Yang G, Wei T Q, et al. Recognition of high yield and stable yield factors of Daanzhai tight oil, Guihua oilfield. J Southwest Petrol Univ Sci Technol Ed, 2015, 37(5): 23 (黄东, 杨光, 韦腾强, 等. 川中桂花油田大安寨段致密油高 产稳产再认识. 西南石油大学学报: 自然科学版), 2015, 37 (5): 23) [12] Ren Y, Cao H, Yao F C, et al. Brittleness and fracability pre鄄 diction for tight oil reservoir in Jimsar Sag, Junggar Basin. Oil Geophys Prosp, 2018, 53(3): 511 (任岩, 曹宏, 姚逢昌, 等. 吉木萨尔致密油储层脆性及可压 裂性预测. 石油地球物理勘探, 2018, 53(3): 511) [13] Fan J M, Yang Z Q, Li W B, et al. Assessment of fracturing treatment of horizontal wells using SRV technique for Chang鄄7 tight oil reservoir in Ordos Basin. J China Univ Petrol Ed Nat Sci, 2015, 39(4): 103 (樊建明, 杨子清, 李卫兵, 等. 鄂尔多斯盆地长 7 致密油水 平井体积压裂开发效果评价及认识. 中国石油大学学报: 自 然科学版, 2015, 39(4): 103) [14] Guo J C, Tao L, Zeng F H. Optimization of refracturing timing for horizontal wells in tight oil reservoirs: a case study of Creta鄄 ceous Qingshankou Formation, Songliao Basin, NE China. Petrol Explor Dev, 2019, 46(1): 146 (郭建春, 陶亮, 曾凡辉. 致密油储集层水平井重复压裂时 机优化———以松辽盆地白垩系青山口组为例. 石油勘探与开 发, 2019, 46(1): 146) [15] Yassin M R, Habibi A, Zolfaghari A, et al. An experimental study of nonequilibrium carbon dioxide / oil interactions. SPE J, 2018, 23(5): 1768 [16] Dong P F, Puerto M, Jian G Q, et al. Low鄄IFT foaming system for enhanced oil recovery in highly heterogeneous/ fractured oil鄄 wet carbonate reservoirs. SPE J, 2018, 23(6): 2243 [17] Huang D Z, Xiang D, Wang C S. A feasibility analysis of water鄄 flood swallowing鄄spitting oil production. Drill Prod Technol, 2003, 26(4): 17 (黄大志, 向丹, 王成善. 油田注水吞吐采油的可行性分析. 钻采工艺, 2003, 26(4): 17) [18] Tao D H, Zhan X H, Gao J W, et al. Study and practice of cy鄄 clic water injection in Mazhong tight oil reservoir in the Santanghu Basin. Oil Drill Prod Technol, 2018, 40(5): 614 (陶登海, 詹雪函, 高敬文, 等. 三塘湖盆地马中致密油藏注 水吞吐探索与实践. 石油钻采工艺, 2018, 40(5): 614) [19] Wang X Z, Dang H L, Gao T. Method of moderate water injec鄄 tion and its application in ultra鄄low permeability oil reservoirs of Yanchang Oilfield, NW China. Petrol Explor Dev, 2018, 45 (6): 1026 (王香增, 党海龙, 高涛. 延长油田特低渗油藏适度温和注 水方法与应用. 石油勘探与开发, 2018, 45(6): 1026) [20] Zhao L J. Applications of oil producing technology of huff and puff infection of microbe in low permeable oilfields. Petrol Drill Tech, 2005, 33(3): 61 (赵丽娟. 微生物采油技术在低渗透油田的应用. 石油钻探 技术, 2005, 33(3): 61) [21] Kumar V, Paraschivoiu M, Nigam K D P. Single鄄phase fluid flow and mixing in microchannels. Chem Eng Sci, 2011, 66 (7): 1329 [22] Kandlikar S G. Fundamental issues related to flow boiling in minichannels and microchannels. Exp Therm Fluid Sci, 2002, 26(2鄄4): 389 [23] Li Y, Lei Q, Liu X G, et al. Characteristics of micro scale non鄄 ·1111·
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