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不同類型油藏非均相驅均衡驅替方式及效果評價

Balanced displacement methods and effect evaluation of heterogeneous combination flooding in different reservoirs

  • 摘要: 非均相驅協同礦場調整措施在孤島油田中一區Ng3單元取得了良好的降水增油效果. 然而,由于實際地層非均質性復雜、層間井網部署的差異及不同層位化學劑注入量不同,非均相驅在動用平面和縱向分布剩余油的過程中會相互影響,很難明確不同方式均衡驅替貢獻力度,難以闡明不同類型剩余油的動用機制. 為此,本文采用數值模擬方法,基于目標區塊實際地層參數,建立了五種不同類型剩余油油藏機理模型,通過受效剩余油分布、洗油效率、波及系數、平面含水飽和度變異系數及縱向吸水不均衡系數等指標,評價了非均相驅平面及縱向均衡驅替效果,闡明了剩余油動用機制. 數值模擬研究表明,非均相驅協同井網調整或分層配注等礦場調整措施,能最大程度擴大波及、提升均衡驅替效果. 針對不同類型剩余油油藏,明確了均衡驅替方式貢獻力度及實施優先級,實際應用時應根據油藏類型和礦場實施條件,選取適宜的均衡驅替方式. 本研究為礦場非均相驅動用不同類型剩余油提供了合理的解釋,對非均相驅在礦場不同類型油藏的進一步推廣應用提供參考.

     

    Abstract: The synergistic oil production using heterogeneous combination flooding and field adjustment measures achieved good results in increasing oil production and decreasing water cut in the Ng3 block of the Gudao Oilfield. However, because of the complex heterogeneity of the actual formation, differences in the deployment of interlayer well networks, and different injection volumes of chemical agents in different layers, the extraction of planar and vertical remaining oil by heterogeneous combination flooding is affected. Clarifying the contributions of different balanced displacement methods and elucidating the mechanism of extracting the different types of remaining oil are difficult. Therefore, this study establishes five different types of models for remaining oil reservoirs based on the actual formation parameters of target blocks using reservoir numerical simulations. The remaining oil, extracted remaining oil, oil displacement efficiency, sweep coefficient, planar water saturation variation coefficient, and vertical water absorption imbalanced coefficient are used to evaluate the balanced displacement effects of heterogeneous combination flooding. On this basis, the mechanism of the remaining oil extraction was elucidated. The numerical simulation results show that field adjustment measures such as well network adjustment and layered injection allocation for heterogeneous combination flooding can maximize the balanced displacement effect. For different types of remaining oil reservoirs, the priority of implementing balanced displacement methods was clarified. In practical applications, suitable balanced displacement methods should be selected based on the type of reservoir and conditions of the field implementation. In reservoirs with developed high-permeability zones, heterogeneous combination flooding effectively creates advantageous channels for water flow. Meanwhile, well network infilling can increase the swept volume of heterogeneous combination flooding in low-permeability areas and enhance the displacement efficiency of the enriched remaining oil. The balanced displacement effect of heterogeneous combination flooding was better than that of the well network adjustment. In reservoirs with imperfect injection production well networks, improving the well network can increase the sweep range of streamlines, and synergistic heterogeneous combination flooding can dynamically regulate and strengthen the extraction of remaining oil. The balanced displacement effect of well network adjustment is better than that of the heterogeneous combination flooding. In unconnected reservoirs, the enriched remaining oil blocked by faults is difficult to connect with production wells. Thus, well network adjustment can effectively overcome the blocking effect of faults and extract unconnected remaining oil. The balanced displacement effect of well network adjustment is better than that of the heterogeneous combination flooding. In rhythmic reservoirs, injected fluids flow along high-permeability water-flooded intervals. Heterogeneous combination flooding can effectively plug them, thereby increasing the water absorption of weak, low-permeability water-flooded intervals and extracting the high-saturation remaining oil. In interbed reservoirs, layered water injection can significantly improve the degree of vertical water absorption imbalance. Heterogeneous combination flooding further played a role in conformance control and oil displacement at different layers, enhancing the sweep effect and improving oil displacement efficiency, effectively extracting the remaining oil controlled by the interbeds. The effect of heterogeneous combination flooding on improving balanced displacement is better than that of layered water injection, and the layered allocation of heterogeneous combination flooding can achieve vertical balanced displacement to the maximum extent. This study provides a reasonable explanation for extracting different types of remaining oil and achieving balanced displacement for heterogeneous combination flooding and affords reference significance for future promotion and field applications in different reservoirs.

     

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