1. Petroleum Exploration and Production Research Institute,SINOPEC,Haidian,Beijing 100083,China
2. College of Petroleum Engineering,China University of Petroleum(Beijing),Changping,Beijing 102249,China
[1] BUTLER R M,STEPHENS D J. The gravity drainage
of steam-heated heavy oil to parallel horizontal wells[J].
Journal of Canadian Petroleum Technology,1981,
20(2):90 95.
[2] BUTLER R M. A new approach to the modelling of
steam-assisted gravity drainage[J]. Journal of Canadian
Petroleum Technology,1985,24(3):42 51.
[3] 刘尚奇,许心伟,张锐. 稠油油藏水平井热采应用研
究[J]. 石油勘探与开发,1996,23(2):65 69.
LIU Shangqi,XU Xinwei,ZHANG Rui. A simulation
study on the application of horizontal wells in heavy oil
reservoirs[J]. Petroleum Exploration and Development,
1996,23(2):65 69.
[4] 凌建军,黄鹂. 国外水平井稠油热力开发技术[J]. 石油
钻探技术,1996,24(4):44 47.
[5] 张荣斌,陈勇. 日臻完善的SAGD 采油技术[J]. 国外油
田工程,1999(11):15 17.
[6] 武毅,张丽萍,李晓漫,等. 超稠油SAGD 开发蒸汽腔
形成及扩展规律研究[J]. 特种油气藏,2007,14(6):
40 43.
WU Yi,ZHANG Liping,LI Xiaoman,et al. Study of
steam chamber growth and expansion in SAGD for ultra
heavy oil[J]. Special Oil and Gas Reservoirs,2007,
14(6):40 43.
[7] 席长丰,马德胜,李秀峦. 双水平井超稠油SAGD 循环
预热启动优化研究[J]. 西南石油大学学报:自然科学
版,2010,32(4):103 108.
XI Changfeng,MA Desheng,LI Xiuluan. Study on
SAGD technology for ultra heavy oil in dual horizontal
wells[J]. Journal of Southwest Petroleum University:Science
& Technology Edition,2010,32(4):103 108.
[8] 金兆勋. 不同组合方式的蒸汽辅助重力泄油开发过程
阶段划分[J]. 长江大学学报:自然科学版,2009,6(3):
186 189.
[9] MOINI B,EDMUNDS N. Quantifying heat requirements
for SAGD startup phase:steam injection,electrical heating[
J]. Journal of Canadian Petroleum Technology,2013,
52(2):89 94.
[10] 范江,李永革. 稠油电磁热采方法[J]. 特种油气藏,
1997,4(2):55 57.
[11] 韩维滨,孙换志,刘维宪. 电磁油管加热采油技术[J].
油气田地面工程,1999,18(3):24,29.
[12] LUCAS R N. Dehydration of heavy crudes by electrical
means[C]. SPE 1506,1966.
[13] MCQUEEN G,PARMAN D,WILLIAMS H. Electrothermal
heating of California oil wells:a case study of
enhanced oil recovery of shallow wells[J]. IEEE Industry
Applications Magazine,2012,18(5):18 25.
[14] JUAN C M,WILSON B,BERNARDO S. Production increase
with electric heating production line technology in
an extra-heavy oil field in Colombia:successful case of
flow assurance[C]. SPE 159219,2012.
[15] GASBARRI S,DIAZ A,GUZMAN M. Evaluation of
electric heating on recovery factors in extra heavy oil
reservoir[C]. SPE 149779,2011.
[16] HASCAKIR B,BABADAGLI T,AKIN S. Field-scale
analysis of heavy-oil recovery by electrical heating[C].
SPE 117669,2010.
[17] ZHONG Liguo,YU Di,YANG Hailin,et al. Feasibility
study on producing heavy oil by gas and electrical heating
assisted gravity drainage[C]. SPE 21649,2011.
[18] 史宝光,蒋淑婷,冯球业,等. 电加热配套技术在孤岛
零散稠油油藏开采中的应用[J]. 石油钻采工艺,2001,
23(1):69 70.
SHI Baoguang,JIANG Shuting,FENG Qiuye,et al.
Application of the matching technology of electric heating
in scattered viscous reservoirs[J]. Drilling & Production
Technology,2001,23(1):69 70.
[19] 李伟超,刘平,于继飞,等. 渤海稠油油田井筒电
加热技术可行性分析[J]. 断块油气田,2012,19(4):
513 516.
LI Weichao,LIU Ping,YU Jifei,et al. Feasibility analysis
on electric heating of wellbore in heavy oilfield of
Bohai[J]. Fault-Block Oil & Gas Field,2012,19(4):
513 516.
[20] VINSOME K,MCGEE B C W,VERMEULEN F E,et al.
Electrical heating[J]. Journal of Canadian Petroleum Technology,
1994,33(4):29 36.
[21] SANDBERG C,SANDBERG C L,THOMAS K,et al.
Advances in electrical heating technology for heavy oil
production[C]. SPE 170146,2014.
[22] 汪泓. 电加热井的井筒温度场数学模型[J]. 油气井测
试,2003,12(3):1 3.
WANG Hong. The mathematic model of elect-heating
well in the well bore temperature field[J]. Well Testing,
2003,12(3):1 3.
[23] 王立影. 渤海稠油油田井筒电加热技术可行性分
析[D]. 大连:大连理工大学,2005.