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Detailed Characterization of the Remaining Oil in Matured Water Drive Reservoir

机译:成熟水驱油藏中剩余油的详细表征

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Most of the water-drive oil reservoirs in the western South China Sea had stepped in the middle and high water-cut stage. By the influence of reservoir heterogeneity, fault distribution, well pattern deployment and variation of reservoir flow parameters during long-term natural water drive and water flooding, the remaining oil distribution forecast is not accurate enough, increasing the difficulty of making effective adjustment and potential tapping measures. Through years of tackling key technical problems and field practice, the detailed characterization technique of the remaining oil in matured water drive reservoir was presented. Based on water displacement mechanism, variation of relative permeability curves are derived from Zhang’s water-drive characteristic curve during long-term water displacement. In addition, dynamic monitoring data matching was adopted to improve the forecast accuracy of the remaining oil distribution in water flooding oil reservoirs. By combination of flow field, remaining oil saturation field, and remaining oil reserves abundance, comprehensive characterization of water drive dynamic state was realized. The remaining oil enriched areas were quantitatively classified into four levels of potential regions, and corresponding adjustment and potential tapping measures were proposed. This technique had been successfully applied in the middle and high water-cut oilfields in the western South China Sea, with remarkable estimated incremental oil production of approximately 204,000 msup3/sup.
机译:南海西部大部分的水驱油藏都处于中高含水阶段。在长期自然水驱和注水期间,由于储层非均质性,断层分布,井网布放以及储层流量参数变化的影响,剩余油分布预测不够准确,增加了进行有效调整和挖潜的难度。措施。通过多年解决关键技术问题和现场实践,提出了成熟水驱油藏中剩余油的详细表征技术。基于驱水机理,从长期驱水过程中张的水驱特征曲线推导了相对渗透率曲线的变化。另外,通过动态监测数据匹配提高了注水油藏剩余油分布的预测精度。通过将流场,剩余油饱和度场和剩余油储量丰富相结合,实现了水驱动力状态的综合表征。将剩余的富油区定量地划分为四个级别的潜在区域,并提出了相应的调整措施和潜在开采措施。该技术已成功应用于南海西部的中高含水油田,据估计,该油田的增产效果显着,约为204,000 m 3

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