ISSN 1673-8217 CN 41-1388/TE
主管:中国石油化工集团有限公司 主办:中国石油化工股份有限公司河南油田分公司
李远光, 方越, 石璐, 朱浩, 韩吉璞. 2019: 特高含水油田高耗水层带识别方法研究——以双河油田为例. 石油地质与工程, 33(04): 65-68.
引用本文: 李远光, 方越, 石璐, 朱浩, 韩吉璞. 2019: 特高含水油田高耗水层带识别方法研究——以双河油田为例. 石油地质与工程, 33(04): 65-68.
LI Yuanguang, FANG Yue, SHI Lu, ZHU Hao, HAN Jipu. 2019: Identification method of high-water consumption zone in super high water cut oilfield——by taking Shuanghe oilfield as an example. Petroleum Geology and Engineering, 33(04): 65-68.
Citation: LI Yuanguang, FANG Yue, SHI Lu, ZHU Hao, HAN Jipu. 2019: Identification method of high-water consumption zone in super high water cut oilfield——by taking Shuanghe oilfield as an example. Petroleum Geology and Engineering, 33(04): 65-68.

特高含水油田高耗水层带识别方法研究——以双河油田为例

Identification method of high-water consumption zone in super high water cut oilfield——by taking Shuanghe oilfield as an example

  • 摘要: 受储层非均质性及长期注水开发的影响,特高含水油田高耗水层带发育,注水低效无效循环,不利于提高采收率且大大增加运行成本。为了准确识别出高耗水层带分布状况,采用数值模拟技术,定量表征油藏不同位置的驱替倍数,先根据驱替倍数与采出程度、驱替倍数与含油饱和度的关系对驱替倍数进行分级评价,将驱替倍数大于50倍的区域界定为高耗水区,再根据数值模拟评判结果形成高耗水层带识别方法。该方法在双河油田实际应用中取得了较好的效果,为高耗水层带治理对策的制定提供了依据。

     

    Abstract: Due to the influence of reservoir heterogeneity and long-term water injection development, the highwater-consumption zone in the ultra-high water-cut oilfield develops, while the low-efficiency and ineffective circulation of water injection is not conducive to improving recovery and greatly increasing operating cost. In order to accurately identify the distribution of high-water consumption zones, numerical simulation techniques were used to quantitatively characterize the displacement multiples of different reservoir locations. According to the relationship between displacement multiple and recovery degree, displacement multiple and oil saturation, the displacement multiple is graded and evaluated, and the area with displacement multiple greater than 50 times is defined as high water consumption zone. Then, the identification method of high-water consumption zone is formed based on the evaluation results of numerical simulation. This method has achieved good results in the practical application of Shuanghe oilfield, which provides a basis for the formulation of control countermeasures in high water consumption zones.

     

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