Qu Yingxin, Yan Xiaofeng. Optimization of Injection-Production Parameters in Thin Heavy Oil Reservoirs Development of Du66 Block in Jiangqiao through Hot Water Flooding[J]. Petroleum Drilling Techniques, 2013, 41(6): 90-94. DOI: 10.3969/j.issn.1001-0890.2013.06.018
Citation: Qu Yingxin, Yan Xiaofeng. Optimization of Injection-Production Parameters in Thin Heavy Oil Reservoirs Development of Du66 Block in Jiangqiao through Hot Water Flooding[J]. Petroleum Drilling Techniques, 2013, 41(6): 90-94. DOI: 10.3969/j.issn.1001-0890.2013.06.018

Optimization of Injection-Production Parameters in Thin Heavy Oil Reservoirs Development of Du66 Block in Jiangqiao through Hot Water Flooding

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  • Received Date: February 19, 2013
  • Revised Date: November 05, 2013
  • In order to improve the recovery of thin heavy oil reservoir after cold production,injection-production parameters influencing hot water flooding have been studied.According to the core flooding laboratory experiment under the simulated reservoir conditions and thermal recovery environment,the geological model and numerical model were established with petrel and thermal recovery module of CMG,respectively.Du66 Block development under various temperatures,injection patterns and IPR were compared,the development mode of flooding shift in moderate water cut stage and alternating injection of hot and cold water were selected.The study shows the optimized development mode includes flooding shift at water cut of 60%,7 cycles of alternating injection of hot and cold water,and injection of 80 ℃ hot water at 0.95 IPR,which can result in an increase of oil displacement efficiency of 17.27% over cold water flooding.The research results show that hot water flooding can improve the development effect of thin heavy oil reservoirs and provide technical support for their economic development.
  • [1]
    张贤松, 丁美爱.陆相沉积稠油油藏聚合物驱关键油藏条件研究[J].石油天然气学报, 2009, 31(1):127-129. Zhang Xiansong, Ding Meiai.Research of critical reservoir conditions on polymer flooding in continental deposit heavy oil reservoir[J].Journal of Oil and Gas Technology, 2009, 31(1):127-129.
    [2]
    Knight B L, Rhudy J S.Recovery of high-viscous erudesby polymer flooding[J].JCPT, 1997, 16(4):46-56.
    [3]
    康志勇.辽河地区稠油分类及其储量等级划分[J].特种油气藏, 1996, 3(2):7-12. Kang Zhiyong.Heavy oil classification and its reserves classification in Liaohe Province[J].Special Oil Gas Reservoir, 1996, 3(2):7-12.
    [4]
    Zhou W, Zhang J, Feng G, et al.Key technologies of polymer flooding in offshore oilfield of Bohai Bay[R].SPE 115240, 2008.
    [5]
    张锐.稠油热采技术[M].北京:石油工业出版社, 1999:2-6. Zhang Rui.Heavy oil thermal recovery technologies[M].Beijing:Petroleum Industry Press, 1999:2-6.
    [6]
    计秉玉.国内外油田提高采收率技术进展与展望[J].石油与天然气地质, 2012, 33(1):111-117. Ji Bingyu.Progress and prospects of enhanced oil recocery technologies at home and abroad[J].Oil Gas Geology, 2012, 33(1):111-117.
    [7]
    张连社, 张萍, 周玉龙.边底水稠油油藏营13断块开发技术与应用[J].石油地质与工程, 2012, 26(3):89-91. Zhang Lianshe, Zhang Ping, Zhou Yulong.Oil recovery technology and its application in edge-bottom water heavy oil reservoir in Ying 13 Fault-Block[J].Petroleum Geology and Engineering, 2012, 26(3):89-91.
    [8]
    丁一萍, 刘传喜, 凡玉梅, 等.低渗稠油油藏热采效果影响因素分析及水平井优化[J].断块油气田, 2011, 18(4):489-492. Ding Yiping, Liu Chuanxi, Fan Yumei, et al.Influence factors on thermal recovery effect and horizontal well optimization research in low-permeability heavy oil reservoir[J].Fault-Block Oil Gas Field, 2011, 18(4):489-492.
    [9]
    关文龙, 吴淑红, 蒋有伟.高含水油藏转注蒸汽三维物理模拟研究[J].石油学报, 2009, 30(3):404-408. Guan Wenlong, Wu Shuhong, Jiang Youwei.3D physical model of steam injection in high water-cut reservoir[J].Acta Petrolei Sinica, 2009, 30(3):404-408.
    [10]
    于春生, 李闽, 乔国安.纵向非均质油藏水驱油实验研究[J].西南石油大学学报:自然科学版, 2009, 31(1):84-86. Yu Chunsheng, Li Min, Qiao Guoan.Vertically heterogeneous reservoir water flooding oil test[J].Journal of Southwest Petroleum University:Science Technology Edition, 2009, 31(1):84-86.
    [11]
    张方礼, 刘其成, 刘宝良, 等.稠油开发实验技术与应用[M].北京:石油工业出版社, 2007:1-2. Zhang Fangli, Liu Qicheng, Liu Baoliang, et al.The heavy oil development technology and application[M].Beijing:Petroleum Industry Press, 2007:1-2.
    [12]
    袁士义, 刘尚奇, 张义堂.热水添加氮气泡沫驱提高稠油采收率研究[J].石油学报, 2004, 25(1):57-65. Yuan Shiyi, Liu Shangqi, Zhang Yitang.Enhance heavy oil recovery with hot water flooding by adding nitrogen and surfactant[J].Acta Petrolei Sinica, 2004, 25(1):57-65.
    [13]
    卢川, 刘慧卿, 杨云龙, 等.火用传递原理在稠油复合蒸汽驱方案优选中的应用[J].断块油气田, 2012, 19(5):615-617. Lu Chuan, Liu Huiqing, Yang Yunlong, et al.Application of exergy transfer theory in scheme optimization of compound steam flooding for heavy oil[J].Fault-Block Oil Gas Field, 2012, 19(5):615-617.
    [14]
    杨龙, 沈德煌, 王晓冬.温度对稠油相对渗透率及残余油饱和度的影响[J].石油勘探与开发, 2003, 30(2):97-99. Yang Long, Shen Dehuang, Wang Xiaodong.The effect of temperature on the relative permeability and residual oil saturation[J].Petroleum Exploration and Development, 2003, 30(2):97-99.
    [15]
    曾溅辉, 王洪玉.反韵律砂层石油运移模拟实验研究[J].沉积学报, 2001, 19(4):592-597. Zeng Jianhui, Wang Hongyu.Experemental study of oil migration in coarsening upwards sands[J].Acta Sedimentologica Sinica, 2001, 19(4):592-597.
    [16]
    东晓虎, 刘慧卿.稠油油藏注蒸汽开发后转热水驱实验与数值模拟[J].油气地质与采收率, 2012, 19(2):50-53. Dong Xiaohu, Liu Huiqing.Laboratory experiment and numerical simulation on hot water flooding of heavy oil reservoir after steam injection development[J].Petroleum Geology and Recovery Efficiency, 2012, 19(2):50-53.
    [17]
    李安夏.乐安油田草4块稠油热水驱及热化学驱实验研究[J].油气地质与采收率, 2011, 18(3):64-66. Li Anxia.Study on hot water and hot chemical flooding in heavy oil reservoir of Block Cao 4, Le’an Oilfield[J].Petroleum Geology and Recovery Efficiency, 2011, 18(3):64-66.
    [18]
    刘文章.热采稠油油藏开发模式[M].北京:石油工业出版社, 1998:198-199. Liu Wenzhang.Thermal recovery development mode of heavy oil reservoir[M].Beijing:Petroleum Industry Press, 1998: 198-199.
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