高级检索

高含水油藏密井网与化学驱提高采收率机理及实践

Mechanism and case analysis of chemical flooding enhanced oil recovery with well pattern infilling in high water-cut reservoirs

  • 摘要:
    目的 针对高含水油藏常规开发方式剩余油动用难度大、采收率提高受限的难题,探索密井网与化学驱的协同增效机制,以指导现场高效开发。
    方法 综合运用物理模拟(二维平板填砂模型)和数值模拟技术,揭示了密井网与化学驱的扩大波及范围与高效驱油机理,分析了储层非均质性、井网类型及注采参数对开发效果的影响,并在G油田Q区块开展了实例验证。
    结果  井网加密通过增强井间连通性和流线重置,强制动用相对低渗区剩余油;化学驱则通过调驱和洗油作用,提高驱油效率。二者协同实现了“宏观波及与微观驱替”的双重强化,且储层非均质性越强,协同增效潜力越大。现场实践表明,采用优化的150 m×75 m正对排状井网,可使区块采收率最大提高13.3%。
    结论 密井网与化学驱协同开发模式能够显著提高高含水油藏的采收率,为同类油藏的深度开发提供了有效的技术路径。

     

    Abstract:
    Objective The reservoir has entered a high water-cut development stage, facing challenges such as a sharp increase in water cut, and difficulty in enhancing and maintaining oil production. The coordinated development of well pattern infilling and chemical flooding is an important method to further enhance oil recovery (EOR) of high water cut reservoirs.
    Method Firstly, the differences in EOR using chemical flooding with well pattern infilling under various development modes through plate sand-packed model experiments were investigated. Secondly, numerical simulations were conducted to analyze the impacts of multiple factors on the development effect. Finally, a case study was conducted on a typical block within the field.
    Result The well pattern infilling enabled heterogeneous fluids to uniformly enlarge sweep efficiency and displace remaining oil, reducing the formation and propagation of preferential flow channels. With the commissioning of new wells, areas previously inaccessible to injected fluids can be forcibly mobilized to utilize residual oil, allowing chemical flooding systems to achieve EOR effects across a broader scope. The stronger the reservoir heterogeneity, the greater the EOR potential through well pattern infilling-chemical flooding. Increasing well pattern density and reducing well spacing enhance interwell connectivity, facilitating more comprehensive remaining oil mobilization. After the adoption of a 150 m × 75 m arranged well network in the Q block of the G oilfield, the streamline density in edge areas significantly increased, remaining oil was further extracted, and the maximum EOR reached 13.3%.
    Conclusion Well pattern infilling-chemical flooding achieves dual benefits: well pattern infilling improves reservoir control and interwell connectivity, while chemical flooding efficiently displaces remaining oil in unswept regions. This synergistic approach further enhances oil recovery in high water-cut reservoirs.

     

/

返回文章
返回