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Effectively optimizing production of horizontal wells in homogeneous oil reservoirs

机译:有效优化均质油层中水平井的产量

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摘要

Horizontal well applications have been predominant since their conception, for reasons such as effective depletion of oil reservoirs and especially in water cresting, gas cresting or water and gas cresting applications due to the casings enhanced exposure to the reservoir. Cresting is hugely dependent on oil production rate, pressure drawdown and can negatively influence the degree of depletion as well as the overall recovery efficiency of oil reservoirs. This paper presents a novel procedure of mimicking horizontal wells aimed at investigating experimentally the effect of varying inclined sections (having different vertical and horizontal displacements) of horizontal wells at low angles of inclination (15o-30o) in a homogeneous reservoir underlain by a strong bottom aquifer and overlain by a considerable gas cap drive occurring simultaneously. ududThe results for the performance of the different horizontal well geometries in terms of cumulative oil recovery and Water-Oil-Ratio; over a fixed liquid production time were compared. From the results obtained, it was observed that the short radius well with 30o angle of inclination and ratio of vertical displacement of the inclined section to reservoir height of 0.07 resulted in the highest oil recovery of 38.73%. Using the presented procedure, 5.60% increment in oil was recovered with 11.40% reduction in cumulative produced water were observed between the best and worst cases from the same reservoir. At higher withdrawal rates and pressure drop, long radii wells are recommended due to cresting delay ability while improving oil recovery.
机译:自从构思以来,水平井的应用就占主导地位,原因是诸如有效地减少了油藏,尤其是由于套管增加了对油藏的暴露程度,在注水,注气或注水和注气的应用中。顶峰在很大程度上取决于产油率,压力下降,并且可能对枯竭程度以及储层的整体采收率产生负面影响。本文提出了一种模拟水平井的新方法,旨在通过实验研究水平井在低倾角(15o-30o)的情况下在坚硬的底部之下的水平井中变化的倾斜井段(具有不同的垂直和水平位移)的影响。含水层和覆盖层同时发生大量的气顶驱动。 ud ud:根据累积油采收率和水油比,不同水平井几何形状的性能结果;比较了固定液体生产时间。从获得的结果中,可以看到,倾斜角为30o的短半径井以及倾斜段的垂直位移与储层高度的比率为0.07,导致最高采油率为38.73%。使用提出的程序,在同一储层的最佳和最差情况下,回收的石油增加了5.60%,累计采出水减少了11.40%。在较高的抽采速率和压降下,由于具有顶峰延迟能力,同时又可提高采油率,因此建议使用长半径井。

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