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首页> 外文期刊>Journal of Petroleum Science & Engineering >On drilling directions for optimizing horizontal well stability using a dual-porosity poroelastic approach
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On drilling directions for optimizing horizontal well stability using a dual-porosity poroelastic approach

机译:关于使用双孔隙多孔弹性方法优化水平井稳定性的钻井方向

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摘要

Horizontal wells are often drilled in pay zones,where formations frequently contain dominant natural fractures.For characterizing such reservoirs the dual-porosity poroelastic model appears to be relevant to assess stresses as well as flow fields.Traditionally,various combinations of elastic,elastoplastic and poroelastic models are employed to predict wellbore stability and calculate mud weight windows.However,the majority of such models are either limited to the case of vertical wells,or unsuitable for applications to naturally fractured porous formations.A novel wellbore model,based on the dual-porosity poroelastic theory,has been developed,which can effectively simulate the coupled processes of fluid flow and rock deformation in fractured porous formations.The numerical implementation of the theoretical model leads to a pseudo-three-dimensional generalized plane strain finite element model specialized in analyzing borehole stability problems.The numerical model not only performs the effective stress and fluid pressure analyses,but also conducts the mud weight calculation and optimizes the drilling direction.The model has been further applied to analyze the stability of horizontal wells with open-hole completion,drilled parallel or perpendicular to the maximum horizontal stress direction.Results show that horizontal borehole stability depends strongly on the in-situ stress state and borehole orientation:the horizontal wells drilled in the maximum stress direction in a strike slip faulting stress regime are usually more stable during both drilling and production.
机译:水平井通常在产层中钻探,那里的地层经常包含主要的天然裂缝。为表征这类油藏,双孔隙孔隙弹性模型似乎与评估应力和流场有关。传统上,弹性,弹塑性和孔隙弹性的各种组合该模型可用于预测井眼稳定性并计算泥浆比重窗口。但是,大多数此类模型要么限于垂直井,要么不适合天然裂缝性多孔地层的应用。建立了孔隙孔隙弹性理论,可以有效地模拟裂隙多孔地层中流体流动与岩石变形的耦合过程。理论模型的数值实现导致了专门用于分析的伪三维广义平面应变有限元模型。钻孔稳定性问题。数值模型不仅执行该模型已被进一步用于分析裸眼完井,平行于或垂直于最大水平应力方向钻探的水平井的稳定性。结果表明,水平井眼稳定性主要取决于地应力状态和井眼方位:在走滑断层应力状态下,沿最大应力方向钻的水平井在钻探和生产过程中通常更加稳定。

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