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Method of moderate water injection and its application in ultra-low permeability oil reservoirs of Yanchang Oilfield, NW China

机译:中注水方法及其在西北地区延长油田超低渗透油藏中的应用

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摘要

To explore the method of improving development effect and solving the problem of water breakthrough and water out for ultralow permeability fractured reservoirs, an indoor evaluation method of dynamic imbibition for fracture-matrix system was established taking the Chang 8 reservoir in southern Yanchang Oilfield as a research target. Key factors for the imbibition effect were obtained, an imbibition’s rate expression was obtained, a model considering the double effects of imbibition-displacement was built and optimal injection and production parameters for the research area were obtained as well. The results show that an optimum displacement rate that maximizes the oil displacement efficiency exists in the water displacing oil process, and the optimal displacing rate becomes smaller as the permeability decreases. The imbibition displacement efficiency increases as the reservoir quality index and water wettability index of rock become bigger. But the larger the initial water saturation or oil-water viscosity ratio is, the smaller the imbibition displacement efficiency is. The optimal injection-production ratio for the Chang 8 reservoir of southern Yanchang Oilfield is 0.95, and the predicted recovery is 17.2% when the water cut is 95%, it is 2.9% higher than the recovery of conventional injection-production ratio 1.2. By using the moderate water injection technique based on the double effects of imbibition-displacement mechanism, the water injection development effect for the ultra-low permeability fractured reservoirs can be improved significantly.
机译:为了探索提高开发效果,解决超低渗透裂缝性油藏突破水和渗水问题的方法,建立了以延长油田南部长8油层为研究对象的裂缝基质体系动态吸水室内评价方法。目标。获得了吸收作用的关键因素,获得了吸收率的表达式,建立了考虑吸收-位移双重影响的模型,并获得了研究区域的最佳注射和生产参数。结果表明,水驱油工艺中存在最大化驱油效率的最佳驱油率,且随着渗透率的降低,最佳驱油率变小。随着岩石储层质量指标和水润湿性指标的增大,吸水驱油效率提高。但是初始水饱和度或油水粘度比越大,吸水驱替效率越小。延长油田南部长8油层的最佳注采比为0.95,含水率为95%时预测采收率为17.2%,比常规注采比1.2高2.9%。利用基于吸收-驱替机理双重作用的温和注水技术,可以大大提高超低渗透裂缝性油藏注水开发效果。

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