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Simulation and Analysis of Wellbore Stability Using FLAC for Horizontal Well Drilling in Shale Formations

机译:使用FLAC在页岩形成中使用FLAC进行井筒稳定性的仿真与分析

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Wellbore stability is of critical importance in all drilling operations. Wellbore instability may cause stuck pipes, lost circulation, and/or collapse of the wellbore, resulting in high drilling cost and significant time loss. In this study, computer simulations using FLAC (Fast Lagrangian Analysis of Continua) were conducted on the stability of horizontal wells in shale formations. Laboratory-tested geomechanical properties of seven shale samples and in-situ stress conditions collected from the literature were used. Computer simulations were carried out to estimate minimum downhole pressures for maintaining wellbore integrity in each type of shale formation under different states of in-situ stresses. The results showed that the minimum downhole pressure to maintain wellbore stability is positively related to stress differentiation and pore pressure, and negatively related to internal frictional angle and cohesion of the surrounding rock. The determination of the minimum downhole pressure from the regression analyses may serve as a basis for engineers to quickly select proper mud density when drilling horizontal wells in potentially problematic rock formations, particularly shale formations.
机译:井筒稳定性在所有钻井作业中都是至关重要的。 Wellbore不稳定性可能导致卡住的管道,失去循环和/或井筒塌陷,从而高钻井成本和显着的时间损失。在本研究中,采用FLAC(Continua的快速拉格朗日分析)的计算机模拟是对页岩形成中水平孔的稳定性进行的。使用从文献中收集的7页岩样品和原位应激条件的实验室测试的地质力学性质。进行计算机模拟以估计在原位应力不同状态下每种类型的页岩形成中保持井筒完整性的最小井下压力。结果表明,保持井眼稳定性的最小井下压力与应力分化和孔隙压力呈正相关,与周围岩石的内部摩擦角和内聚力负相关。来自回归分析的最小井下压力的确定可以作为工程师在潜在的有问题的岩层中钻井井时快速选择适当的泥浆密度的基础,特别是页岩形成。

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