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调剖调驱过程中注入参数敏感性及动态调整顺序研究——以渤海SZ36-1油田为例

Study on the sensitivity of injection parameters and dynamic adjustment sequence during the profile control and flooding process: taking Bohai SZ36-1 Oilfield as an example

  • 摘要: 为改善渤海油田因注水井数量少及油藏地质认识不足导致调剖调驱方案适应性差的问题,该文以渤海SZ36-1油田典型区块为研究对象,通过数值模拟建立地质模型,采用灰色关联度法和正交试验法分析调剖调驱过程中注入参数的敏感性。结果表明:在不同含水条件下,3项注入参数指标对采收率增幅敏感性强弱顺序为段塞尺寸>浓度>注入速度。当含水率较低(60%)时,3项注入参数指标对聚合物微球调驱压力升幅敏感性强弱顺序为注入速度>段塞尺寸>浓度;当含水率较高(80%和98%)时,影响调剖和调驱压力升幅主次次序为浓度>注入速度>段塞尺寸。在实际矿场动态调整过程中,首先明确影响采收率的第一个关键指标,然后判断该指标对注入压力上升速度的敏感性强弱,如果敏感性较强,则需考虑第二个关键指标,以此类推。研究结果为调剖调驱施工的动态调整提供了科学依据,有助于提高措施效果和油田开发效率。

     

    Abstract: To address the issue of poor adaptability of profile control and flooding schemes in Bohai Oilfield due to the limited number of water injection wells and insufficient understanding of reservoir geology, this paper takes a typical block of Bohai SZ36-1 Oilfield as the research object. By establishing a geological model through numerical simulation, the sensitivity of injection parameters during the profile control and flooding adjustment process is analyzed using the grey correlation analysis method and orthogonal experimental design method. The results show that under different water-cut conditions, the sensitivity order of the three injection parameters to the increase in recovery rate as follows: slug size > concentration > injection rate. When the water cut is low (60%), the sensitivity order of the three injection parameters to the pressure increase during polymer microsphere flooding is injection rate > slug size > concentration. However, when the water cut is high (80% and 98%), the primary influencing factors for the pressure increase during both profile control and flooding adjustment are concentration > injection rate > slug size. In the real field dynamic adjustment process, the first step is to identify the key parameter that has the greatest impact on recovery efficiency, and then evaluate its sensitivity to the rate of injection pressure increase. If the sensitivity is strong, the second key parameter should be considered, and so on. The research results provide a scientific basis for the dynamic adjustment of profile control and flooding adjustment operations, which helps improve the effectiveness of the measures and the efficiency of oilfield development.

     

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