Reservoir Engineering

Characteristics of Remaining Oil Distribution in Conglomerate Reservoirs after Water Flooding and Technical Countermeasures

  • Ren Mengyao ,
  • Shi Qiang ,
  • Xin Huazhi ,
  • Liu Zhiqiang ,
  • Zhou Zhiliang
Expand
  • 1. PetroChina Xinjiang Oilfield Company, Karamay, Xinjiang 834000, China;
    2. Beijing Jiacheng Hengye Technology Co., Ltd., Beijing 100000, China

Received date: 2021-07-07

  Revised date: 2022-10-17

  Online published: 2023-03-24

Abstract

In response to the problems of low water flooding control degree in conglomerate reservoirs and extremely imperfect well networks in Wellblock Bai 21, Baikouquan Oilfield in the Junggar Basin, the reservoir engineering method and reservoir geology are used as guidance to conduct fine research on reservoir architecture by applying dynamic and static data, analyze reservoir structure, sedimentation, reservoir in-homogeneous characteristics and oil and water distribution law, and improve the injection-production well patterns. The study results show that The idea of water injection optimization and adjustment “different strategies for different layer systems, adjustment and control by zone, classification by single well, and optimization of method” proposed in the article is very effective for the Baikouquan Oilfield. By carrying out the study on the distribution characteristics of the remaining oil and the reservoir injection and production well patterns in the Triassic system of Wellblock Bai 21, 56 dominant seepage channels were identified through comprehensive analysis by applying flowline simulation technology, and the submitted producing petroleum geological reserves were 975.00×104t, and the accumulated oil increase was 16.60×104t. This study has a reference effect for the improvement of injection and production well patterns and efficient tapping of similar reservoirs.

Cite this article

Ren Mengyao , Shi Qiang , Xin Huazhi , Liu Zhiqiang , Zhou Zhiliang . Characteristics of Remaining Oil Distribution in Conglomerate Reservoirs after Water Flooding and Technical Countermeasures[J]. Special Oil & Gas Reservoirs, 2023 , 30(1) : 147 -153 . DOI: 10.3969/j.issn.1006-6535.2023.01.021

References

[1] 张建良,尤启东.窄条状断块油藏剩余油挖潜技术应用研究[J].石油天然气学报,2008,30(2):124-126.
ZHANG Jianliang,YOU Qidong.Technique for tapping the potential of remaining oil in narrow-strip faulted reservoirs[J].Journal of Oil and Gas Technology,2008,30(2):124-126.
[2] 万学鹏,陈龙,宋代文,等.高含水低幅度构造油田剩余油评价及挖潜措施[J].大庆石油学院学报,2008,32(4):35-37.
WAN Xuepeng,CHEN Long,SONG Daiwen,et al.Remaining oil evaluation and its developing measures in high water cut with low relief structure oilfields[J].Journal of Daqing Petroleum Institute,2008,32(4):35-37.
[3] 胡海涛,吴晓明,龙慧,等.环江油田长6储层特征与测井产能评价[J].测井技术,2012,36(6):647-651.
HU Haitao,WU Xiaoming,Long Hui,et al.Reservoir features and logging productivity evaluation of Chang 6 Reservoir in Huanjiang Oilfield[J].Well Logging Technology,2012,36(6):647-651.
[4] XU Zhengshun,ZHANG Juhe,FENG Zihui,et al.Characteristics of remaining oil viscosity in water-and polymer-flooding reservoirs in Daqing Oilfield[J].Science in China(Series D:Earth Sciences),2010,53(1):72-83.
[5] 李阳.储层流动单元模式及剩余油分布规律[J].石油学报,2003,24(3):52-55.
LI Yang.Flow unit mode and remaining oil distribution in reservoir[J].Acta Petrolei Sinica,2003,24(3):52-55.
[6] 冯明生,许安著,别爱芳,等.水平井挖潜剩余油抽象模型的建立及适应条件[J].油气地质与采收率,2009,16(6):95-97.
FENG Mingsheng,XU Anzhu,BIE Aifang,et al.The establishment and application condition of an abstract model for horizontal wells remaining oil producing[J].Petroleum Geology and Recovery Efficiency,2009,16(6):95-97.
[7] 王怀忠,郑振英,张桂明,等.核磁共振在孔南官195断块剩余油挖潜中的应用[J].新疆地质,2009,27(4):399-402.
WANG Huaizhong,ZHENG Zhenying,ZHANG Guiming,et al.Application of NMR imaging technique to the remaining oil distribution and potential tapping measures in Guan 195 Fault Block of Kongnan Area[J].Xinjiang Geology,2009,27(4):399-402.
[8] 胡书勇,张烈辉,清绍学,等.“三低”油田中高含水期剩余油分布研究及综合调整挖潜技术[J].钻采工艺,2005,28(2):28-30.
HU Shuyong,ZHANG Liehui,QING Shaoxue,et al.Remaining oil distribution research during the high water cut stage in“low pore,low permeability,low salinity”fields and structure adjusting increment technology of potential exploitation resource[J].Drilling & Production Technology,2005,28(2):28-30.
[9] 孙建英,方艳君.聚驱后剩余油分布及挖潜技术研究[J].大庆石油地质与开发,2005,24(4):37-39.
SUN Jianying,FANG Yanjun.Remaining oil distribution and techniques for further development after polymer flooding[J].Petroleum Geology & Oilfield Development in Daqing,2005,24(4):37-39.
[10] HAN Zuozhen,YANG Renchao,FAN Aiping,et al.Remaining oil distribution in Ng33 bottom water reservoir of Lin 2-6 Fault-Block in Huimin Depression and potential tapping in horizontal well[J].International Journal of Mining Science and Technology,2009,19(1):102-107.
[11] 韩大匡.关于高含水油田二次开发理念、对策和技术路线的探讨[J].石油勘探与开发,2010,37(5):583-591.
HAN Dakuang.Discussions on concepts,countermeasures and technical routes for the redevelopment of high water-cut oilfields[J].Petroleum Exploration and Development,2010,37(5):583-591.
[12] 王友净,林承焰,董春梅,等.长堤断裂带北部地区剩余油控制因素与挖潜对策[J].中国石油大学学报(自然科学版),2006,30(4):12-16.
WANG Youjing,LIN Chengyan,DONG Chunmei,et al.Control factors of remaining oil distribution and potential exploitation measures in the northern part of Changdi Fault Belt[J].Journal of China University of Petroleum(Edition of Natural Sciences),2006,30(4):12-16.
[13] 呼舜兴,耿师江,侯平舒,等.非均质复杂断块油藏沉积微相研究及应用[J].西安石油学院学报(自然科学版),2003,18(4):23-25.
HU Shunxing,GENG Shijiang,HOU Pingshu,et al.Study on sedimentary microfacies of heterogeneous complicated fault-block reservoir and its application[J].Journal of Xi′an Petroleum Institute(Natural Science),2003,18(4):23-25.
[14] 张绍臣,李臣,贾培宜,等.萨南油田南二区曲流型分流河道砂体建筑结构及剩余油挖潜[J].大庆石油学院学报,2009,33(4):27-30.
ZHANG Shaochen,LI Chen,JIA Peiyi,et al.Architectural structure of channel sandbodies in meandering river and remaining oil tapping study in PI2a of South-Two Area in Sa′nan Oilfield[J].Journal of Daqing Petroleum Institute,2009,33(4):27-30.
[15] 郑松青,康志江,程晓军,等.塔河油田缝洞型碳酸盐岩油藏水驱开发特征及改善对策[J].油气地质与采收率,2022,29(6):95-104.
ZHENG Songqing,KANG Zhijiang,CHENG Xiaojun,et al. Waterflooding characteristics and improvement measures of fracture-cavity carbonate reservoirs in Tahe Oilfield[J].Petroleum Geology and Recovery Efficiency,2022,29(6):95-104.
[16] 刘晨,张金庆,李文忠,等.基于近似理论水驱曲线的油藏水驱体积波及系数动态计算方法[J].油气地质与采收率,2020,27(5):112-118.
LIU Chen,ZHANG Jinqing,LI Wenzhong,et al.A new dynamic calculation method of volume sweep coefficient of water drive reservoir based on approximate theoretical water drive curve[J].Petroleum Geology and Recovery Efficiency,2020,27(5):112-118.
[17] 刘丽萍,白海涛,王西强,等. 鄂尔多斯盆地白豹油田长81储层水驱油特征及驱油效率影响因素[J].东北石油大学学报,2022,46(6):63-74.
LIU Liping,BAI Haitao,WANG Xiqiang,et al. Water flooding characteristics and influencing factors of oil displacement efficiency of Chang 81 Reservoir in Baibao Oilfield,Ordos Basin[J]. Journal of Northeast Petroleum University,2022,46(6):63-74.
[18] 李承龙.低渗透裂缝性油藏水驱窜流通道精细识别方法研究[J]. 石油化工高等学校学报,2021, 34(3): 38-44.
LI Chenglong. Study on fine identification method of flooding channeling channel in Low permeability fractured reservoir[J]. Journal of Petrochemical Universities,2021, 34(3): 38-44.
Outlines

/