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Near-wellbore modeling of a horizontal well with Computational Fluid Dynamics

机译:计算流体动力学水平井的近井筒建模

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摘要

The oil production by horizontal wells is a complex phenomenon that involves flow through the porous reservoir, completion interface and the well itself. Conventional reservoir simulators can hardly resolve the flow through the completion into the wellbore. On the contrary, Computational Fluid Dynamics (CFD) is capable of modeling the complex interaction between the creeping reservoir flow and turbulent well flow for single phases, while capturing both the completion geometry and formation damage. A series of single phase steady-state simulations are undertaken, using such fully coupled three dimensional numerical models, to predict the inflow to the well. The present study considers the applicability of CFD for near-wellbore modeling through benchmark cases with available analytical solutions. Moreover, single phase steady-state numerical investigations are performed on a specific perforated horizontal well producing from the Siri field, offshore Denmark. The performance of the well is investigated with an emphasis on the inflow profile and the productivity index for different formation damage scenarios. A considerable redistribution of the inflow profile were found when the filtrate invasion extended beyond the tip of the perforations.
机译:水平井的油生产是一种复杂的现象,涉及流过多孔储层,完成界面和本身的流动。传统的储库模拟器几乎不得不通过完成进入井筒的流动。相反,计算流体动力学(CFD)能够为单相的蠕动储存流和湍流井流之间的复杂相互作用,同时捕获完成几何形状和形成损坏。采用这种完全耦合的三维数值模型进行了一系列单相稳态模拟,以预测到井的流入。本研究考虑了CFD通过具有可用分析解决方案的基准案例来实现近井筒建模的适用性。此外,单相稳态数值研究是在丹麦海上Siri场的特定穿孔水平良好生产中进行的。调查井的性能,重点是流入轮廓和不同形成损伤情景的生产率指数。当滤液侵袭延伸超过穿孔的尖端时,发现了流入曲线的相当大的重新分布。

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