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A Comprehensive Skin-Factor Model of Horizontal-Well Completion Performance

机译:水平井完成性能的综合表皮因子模型

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摘要

Horizontal wells or laterals are completed as openhole, slotted-liner, cased and perforated, or gravel-pack completions. We have developed a comprehensive skin-factor model to predict the performance of any of these completion types and have calibrated this model with extensive finite-element simulations of flow for a horizontal-well completion. This model can be used to predict the performance of virtually any horizontal-well completion. The new completion skin-factor model accounts for the effects of formation damage, convergent flow to perforations and slots, and flow through slots, with interaction among these effects. To account for formation damage, we extended our previous rigorous model of a damaged horizontal well to include the presence of perforations within, or extending through, the damage zone. The formation damage model is also integrated with the models of slotted-liner performance to model these completions. The model of slotted- or perforated-liner performance is made on the basis of the relationship between pressure drop and flow rate for turbulent flow in these geometries. The slotted-liner model accounts for partial plugging of the slots by grains of formation minerals or precipitates (scale). Turbulence effects are a major part of the apparent skin factor for these completion types. The model shows the recommended conditions to obtain high-productivity (i.e., low skin factor) completions in horizontal wells. In particular, the interactions among damage effects and skin effects caused by perforations or slots are shown to greatly affect horizontal-well completion performance. The models developed can be applied to design optimal completions for horizontal wells or laterals.
机译:水平井或支管以裸眼,开槽衬管,套管和穿孔或砾石充填完井的形式完工。我们已经开发了一个综合的趋肤因子模型来预测所有这些完井类型的性能,并已使用水平井完井的广泛流动有限元模拟对该模型进行了校准。该模型可用于预测几乎任何水平井完井的性能。新的完井集肤因子模型考虑了地层损害,流向射孔和缝隙的会聚流以及流经缝隙的流,以及这些影响之间的相互作用。为了解决地层损坏问题,我们扩展了先前对受损水平井的严格模型,使其包括在损坏区域内或贯穿损坏区域的穿孔。地层损伤模型也与开槽衬管性能模型集成在一起以对这些完井进行建模。在这些几何形状中,基于湍流的压降和流量之间的关系,建立了开槽或穿孔衬管性能模型。开槽衬板模型解释了地层矿物或沉淀物(水垢)的颗粒部分堵塞了开槽。对于这些完井类型,湍流效应是表观皮肤因素的主要部分。该模型显示了在水平井中获得高生产率(即低表皮因子)完井量的推荐条件。特别是,由穿孔或缝隙引起的损伤效应和集肤效应之间的相互作用显示出极大地影响了水平井完井性能。开发的模型可以用于设计水平井或支管的最佳完井。

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