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Supplementary energy development boundaries of staged fracturing horizontal wells in tight oil reservoirs

机译:紧密油藏中分阶段压裂水平井的补充能源开发边界

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Staged fracturing horizontal well technology is an important means of improving tight reservoir development efficiency. Taking a typical tight oil block in the Oilfield A as the studied area, the vertical well-horizontal well joint arrangement pattern is adopted in this study. The energy supplementary development effects of multiple permeability scales, different arrangement spacing, and different media (H2O, CO2) are discussed through the numerical simulation method. Combined with the principles of petroleum technology economics, the economic evaluation model for staged fracturing horizontal wells in tight oil reservoir development is proposed, thereby determining the technical boundary and economic boundary of supplementary energy development with different media. Studies indicate that the technical boundary and economic boundary of water-flooding development in the Oilfield A are 0.4 and 0.8 mD, respectively, and the technical boundary and economic boundary of CO2-flooding development are 0.1 and 0.4 mD, respectively. This study provides theoretical support for field operation of Oilfield A and guidance for selection of development mode for tight oil reservoirs.
机译:分阶段压裂水平井技术是提高水库开发效率紧张的重要手段。在油田A中采用典型的拧紧油块作为研究区域,本研究采用了垂直井水平井接头布置图案。通过数值模拟方法讨论了多种渗透率,不同布置间距和不同介质(H2O,CO2)的能量补充的开发效果。结合石油技术经济学的原理,提出了紧密油藏开发中分阶段水平井的经济评价模型,从而确定了不同媒体补充能源发展的技术边界和经济边界。研究表明,油田A中水洪水发展的技术边界和经济边界分别为0.4和0.8 md,二氧化碳洪水发展的技术边界和经济边界分别为0.1和0.4 md。本研究为油田A的现场运作提供了理论支持,以及针对紧储油储层的开发模式选择的指导。

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