[1] 孙焕泉,刘慧卿,王海涛,等.中国稠油热采开发技术与发展方向[J].石油学报,2022,43(11):1664-1674. SUN Huanquan,LIU Huiqing,WANG Haitao,et al.Development technology and direction of thermal recovery of heavy oil in China[J].Acta Petrolei Sinica,2022,43(11):1664-1674. [2] WANG C S,ZHANG L,WANG X H,et al.Study on the production law of heavy oil gravity-drainage-assisted steam flooding[J].Energy Science & Engineering,2020,8(5):1758-1769. [3] XUE L,LIU P C,ZHANG Y.Development and research status of heavy oil enhanced oil recovery[J].Geofluids,2022:5015045. [4] 王宏远,杨立强.辽河油田蒸汽辅助重力泄油开发实践[J].特种油气藏,2020,27(6):20-29. WANG Hongyuan,YANG Liqiang.The practice of steam assisted gravity drainage in Liaohe Oilfield[J].Special Oil & Gas Reservoirs,2020,27(6):20-29. [5] 李苒,陈掌星,吴克柳,等.特超稠油SAGD高效开发技术研究综述[J].中国科学:技术科学,2020,50(6):729-741. LI Ran,CHEN Zhangxing,WU Keliu,et al.Review on the effective recovery of SAGD production for extra and super heavy oil reservoirs[J].Scientia Sinica(Technologica),2020,50(6):729-741. [6] 舒展,裴海华,张贵才,等.改善蒸汽辅助重力泄油技术研究进展[J].油田化学,2020,37(1):185-190. SHU Zhan,PEI Haihua,ZHANG Guicai,et al.Research progresses on improving steam-assisted gravity drainage application for heavy oil recovery[J].Oilfield Chemistry,2020,37(1):185-190. [7] CUI G D,LIU T,XIE J Y,et al.A review of SAGD technology development and its possible application potential on thin-layer super-heavy oil reservoirs[J].Geoscience Frontiers,2022,13(4):101382. [8] 陈翔宇,李建元,陈宇.考虑储层物性变化的SAGD开发蒸汽腔前缘传热研究[J].油气藏评价与开发,2023,13(3):379-384. CHEN Xiangyu,LI Jianyuan,CHEN Yu.Heat transfer of steam cavity edge in SAGD process considering reservoir physical property changes[J].Petroleum Reservoir Evaluation and Development,2023,13(3):379-384. [9] 孙新革,罗池辉,张胜飞,等.新疆油田浅层超稠油SAGD高效低碳开发技术研究与展望[J].特种油气藏,2024,31(1):1-8. SUN Xin′ge,LUO Chihui,ZHANG Shengfei,et al.Research and prospects of efficient and low-carbon SAGD development technology for shallow ultra-heavy oil in Xinjiang Oilfield[J].Special Oil & Gas Reservoirs,2024,31(1):1-8. [10] 张莉娜,张耀祖,刘欣.基于蒸汽腔扩展速度的SAGD产能预测模型[J].科学技术与工程,2022,22(19):8271-8278. ZHANG Li′na,ZHANG Yaozu,LIU Xin,et al.Steam assisted gravity drainage production capacity prediction model based on steam chamber expansion speed[J].Science Technology and Engineering,2022,22(19):8271-8278. [11] 范杰,李相方.蒸汽辅助重力泄油蒸汽腔前缘传热模型研究[J].科学技术与工程,2016,16(3):42-47,65. FAN Jie,LI Xiangfang.The research of heat transfer on the front of steam chamber for steam assisted gravity drainage[J].Science Technology and Engineering,2016,16(3):42-47,65. [12] WANG L L,WANG T,WANG J X,et al.A comprehensive investigation of SAGD steam chamber in dual horizontal well pairs:expansion angel and connection characteristics[J].Journal of Petroleum Science and Engineering,2022:110888. [13] LIN R Y,YU C H,WANG F,et al.Simulation calculation and analysis of connate water convection on steam chamber expansion in steam-assisted gravity-drainage process[J].Journal of Energy Engineering,2023,149(4):4023021. [14] 邹进,黄素逸.相变热传导的计算[J].能源技术,2000,21(1):11-14. ZOU Jin,HUANG Suyi.Calculation of heat transfer with phase change[J].Power & Energy,2000,21(1):11-14. [15] 杨世铭,陶文铨.传热学(第三版)[M].北京:高等教育出版社,1998:71-79. YANG Shiming,TAO Wenquan.Heat Transfer(3rd edition)[M].Beijing:Higher Education Press,1998:71-79. [16] 张戈,邢振华,张伟,等.低流度稠油油藏启动机制及主控因素实验研究[J].西安石油大学学报(自然科学版),2023,38(2):77-83. ZHANG Ge,XING Zhenhua,ZHANG Wei,et al.Experimental study on start-up mechanism and Mmain controlling factors of low-mobility heavy oil reservoir[J].Journal of Xi′an Shiyou University(Natural Science Edition),2023,38(2):77-83. [17] 焦焕,代玉杰,王学慧,等.稠油渗流研究现状及发展趋势[J].石油化工,2019,48(12):1283-1288. JIAO Huan,DAI Yujie,WANG Xuehui,et al.Current status and development trend of heavy oil seepage[J].Petrochemical Technology,2019,48(12):1283-1288. [18] 葛明曦.边顶水超稠油油藏SAGD蒸汽腔描述及调控对策[J].特种油气藏,2021,28(4):136-141. GE Mingxi.Description and control strategy of SAGD steam chamber of extra-heavy oil reservoir with edge-top water[J].Special Oil & Gas Reservoirs,2021,28(4):136-141. [19] LYU X C,LIU H Q,TIAN J,et al.Influence of top water on SAGD steam chamber growth in heavy oil reservoirs:an experimental study[J].Journal of Petroleum Science and Engineering,2022,208:109372. [20] 杨浩哲,杨果,周晓义,等.SAGD中后期多介质强化提高开发效果技术[J].油气地质与采收率,2023,30(4):123-129. YANG Haozhe,YANG Guo,ZHOU Xiaoyi,et al.Technology of multi-media enhancement to improve development effects in middle and later stages of SAGD[J].Petroleum Geology and Recovery Efficiency,2023,30(4):123-129. [21] 亢思丹.氮气辅助SAGD开发技术分析与研究[J].内江科技,2022,43(8):69-70. KANG Sidan.Analysis and study of nitrogen-assisted SAGD development technology[J].Neijiang Science & Technology,2022,43(8):69-70. [22] 王诗.氮气辅助SAGD在曙一区超稠油油藏的应用[J].中国石油和化工标准与质量,2017,37(13):102-103. WANG Shi.Application of nitrogen-assisted SAGD in the Shu 1 Block ultra-heavy oil reservoir[J].China Petroleum and Chemical Standard and Quality,2017,37(13):102-103. [23] PANG Z X,WANG L,WU Z B,et al.An investigation into propagation behavior of the steam chamber during expanding-solvent SAGP(ES-SAGP)[J].SPE Journal,2019,24(2):413-430. [24] JAMSHID-NEZHAD M.Steam alternating non-condensable gas injection for more heavy oil recovery[J].Energy,2021:122476.
|