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Optimum Mud Overbalance and ROP Limits for Managing Wellbore Stability in Horizontal Wells in a Carbonate Gas Reservoir

机译:用于管理碳酸盐储气储层水平井中井筒稳定性的最佳泥浆过高和ROP限制

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Saudi Aramco has been drilling horizontal and multilateral wells to develop gas fields. Due to production-induced decreasing reservoir pressures along with tight nature of the reservoir rock, development activities have focused more in placing wells towards the minimum horizontal stress direction and complete with multistage hydraulic fracturing aimed to improve lateral reservoir contact enabling higher production at sustained rates thereby increasing recovery with less number of wells to be drilled. Horizontal wells drilled in the minimum horizontal stress direction are more challenging due to complex geological conditions and compressional in-situ stress conditions. The data shows that some wells were drilled without major difficulty while some other wells encountered more problems leading to stuck pipe events. A detailed study was conducted to identify the nature of these problems and ascertain major controlling factors for this variable drilling experience to make future operations safer and more efficient through recommendations based on a diagnostic analysis of the observed problems in existing wells. Analysis of data suggests that excessive borehole breakouts and faster rate of penetration (ROP) are the key contributing factors to the observed drilling challenges. In addition, differential sticking has been found a potential risk across high porosity and/or depleted zones. As a result, optimum mud weight based on predrill geomechanics model was recommended to manage the hole stability. In addition, a safe limit of ROP as a function of hole azimuth was identified to manage efficient hole cleaning and avoid stuck pipe due to pack-off The recommendations made based on this analysis enabled successful drilling and timely completion of several horizontal wells across the field.
机译:沙特阿美公司一直在钻探水平和多边井以开发天然气场。由于生产诱导的储层压力随着水库岩石的紧张性,开发活动更加集中在井中朝向最小水平应力方向,并且具有多级水力压裂,旨在改善横向储层接触,从而实现持续速率的持续速率更高的产量。增加恢复较少数量的井。由于复杂的地质条件和压缩原位应力条件,在最小水平应力方向上钻的水平孔更具挑战性。这些数据显示,在没有重大困难的情况下钻探一些井,而其他井遇到了导致卡管事件的更多问题。进行了详细研究以确定这些问题的性质,并确定这种可变钻井经验的主要控制因素,以便通过基于对现有井中所观察到的问题的诊断分析来使未来的运营更安全,更有效。数据分析表明,过度的钻孔突破和更快的渗透率(ROP)是观察到的钻孔挑战的主要因素。此外,已经发现差异粘附在高孔隙率和/或耗尽的区域上具有潜在风险。结果,建议使用基于PEIPRILL地质力学模型的最佳泥浆重量来管理孔稳定性。此外,还确定了作为孔方位角函数的ROP的安全限制,以管理有效的孔清洁,并避免由于包装的填充基于该分析而制作的建议,并且在整个领域的几个水平井上完成了几个水平井所做的建议,避免卡住管道。 。

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