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Stability Analysis of Highly Deviated Boreholes to Minimize Drilling Risks and Nonproductive Time

机译:高度偏离钻孔的稳定性分析,以最大限度地减少钻井风险和非培养时间

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摘要

The Lower Cretaceous Zubair Formation is a regionally extended gas-and oil-producing sandstone sequence in Southern Iraq. Due to the weak nature of the Zubair Formation, the lack of wellbore stability is one of the most critical challenges that continuously appears during the drilling development operations. Problems associated with lack of wellbore stability, such as the tight hole, shale caving, stuck pipe, and sidetracking, are both time-consuming and expensive. This study aimed to construct a geotechnical model based on offset well data, including rock mechanical properties, in situ stresses, and formation pore pressure, coupled with suitable rock failure criteria. Mohr-Coulomb and Mogi-Coulomb failure criteria were used to predict the potential rock failure around the wellbore. The effect of the inclination and azimuth of the deviated wells on the shear failure and tensile failure mud weights was investigated to optimize the wellbore trajectory. The results show that the best orientation to drill highly deviated wells (i. e., inclinations higher than 60 deg) is along to the minimum horizontal stress (140 deg). The recommended mud weight for this selected well trajectory ranges from 1.45 to 1.5 g/cc. This study emphasizes that a wellbore stability analysis can be applied as a cost-effective tool to guide future highly deviated boreholes for better drilling performance by reducing the nonproductive time.
机译:下白垩纪Zubair形成是伊拉克南部的区域扩展的天然气和生产油砂岩序列。由于Zubair组的性质疲软,缺乏井筒稳定性是在钻井开发业务期间不断出现的最关键挑战之一。与井筒稳定性相关的问题,例如紧密孔,页岩崩溃,卡住管和侧面均耗时且昂贵。本研究旨在构建基于偏移井数据的岩土学模型,包括岩石力学性能,原位应力和地层孔隙压力,与合适的岩石破坏标准相结合。 Mohr-coulomb和Mogi-coulomb失败标准用于预测井筒周围的潜在岩石破坏。研究了偏离孔的倾斜和方位角对剪切失效和拉伸失效泥浆重量的影响,以优化井眼轨迹。结果表明,钻孔高度偏差的井(即,高于60°的倾斜)的最佳取向沿着最小水平应力(140°)。这种所选井轨迹的推荐泥浆重量为1.45至1.5 g / cc。该研究强调,井眼稳定性分析可以应用于成本效益的工具,以引导未来高度偏离的钻孔,以通过减少非培养时间来更好地钻探性能。

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