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Application and Optimization of a Fractured Horizontal Well in an Ultralow Permeability Reservoir

机译:裂缝性水平井在超低渗透油藏中的应用与优化

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摘要

With wide application of fractured horizontal well in ultralow permeability reservoirs, it's necessary to investigate their development and to optimize fracture parameters. Based on dynamics and numerical simulation in Block W, development index and flow fields including streamlines, oil saturation and formation pressure were analyzed between fractured horizontal and vertical wells, and distribution of equal fractures was optimized. According to production and water cut in fractures, a novel fractured horizontal well with spindle shaped was proposed. The results that fractured horizontal wells had high initial production, great production decline, sharp water cut and low oil recovery. The development of fractured horizontal well is worse than that of fractured vertical one. The optimal fracture distribution of 400 m horizontal segment is 3 equal fractures with space of 133 m. For a 400 m horizontal segment with three equal ones and spacing of 200 m, it is advisable to lengthen the middle fracture and shorten the end fractures to form spindle shaped one, which can improve oil recovery by 1.76% with significant water cut reduction.
机译:随着裂缝性水平井在超低渗透油藏中的广泛应用,有必要研究裂缝的发育并优化裂缝参数。根据W区块的动力学和数值模拟,分析了水平和垂直压裂井之间的开发指数和流场,包括流线,油饱和度和地层压力,并优化了等压裂缝的分布。根据裂缝的产量和含水率,提出了一种新型的纺锤形裂缝水平井。结果表明,水平井压裂初期产量高,产量下降幅度大,含水率大,采油率低。水平裂缝的发展比垂直裂缝的发展差。 400 m水平段的最佳裂缝分布为3个等分裂缝,间距为133 m。对于三个相等且间距为200 m的水平段为400 m的水平段,建议延长中间裂缝并缩短端部裂缝以形成纺锤形,这可以提高采油率1.76%,并显着减少含水率。

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