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Borehole stability analysis in oil and gas drilling in undrained condition

机译:不排水条件下油气钻井的井壁稳定性分析

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Borehole instability during drilling process occurs frequently when drilling through shale formation. When a borehole is drilled in shale formation, the low permeability leads to an undrained loading condition. The pore pressure in the compressed area near the borehole may be higher than the initial pore pressure. However, the excess pore pressure caused by stress concentration was not considered in traditional borehole stability models. In this study, the calculation model of excess pore pressure induced by drilling was obtained with-the introduction of Henkel's excess pore pressure theory. Combined with Mohr-Coulumb strength criterion, the calculation model of collapse pressure of shale in undrained condition is obtained. Furthermore, the variation of excess pore pressure and effective stress on the borehole wall is analyzed, and the influence of Skempton's pore pressure parameter on collapse pressure is also analyzed. The excess pore pressure decreases with the increasing of drilling fluid density; the excess pore pressure and collapse pressure both increase with the increasing of Skempton's pore pressure parameter. The study results provide a reference for determining drilling fluid density when drilling in shale formation.
机译:在通过页岩地层进行钻探时,钻探过程中的井眼不稳定经常发生。当在页岩层中钻出钻孔时,低渗透率导致不排水的加载条件。井眼附近压缩区域中的孔隙压力可能会高于初始孔隙压力。但是,在传统的井眼稳定性模型中并未考虑到应力集中引起的过大孔隙压力。通过引入汉高的超孔隙压力理论,建立了钻井引起的超孔隙压力计算模型。结合莫尔库仑强度准则,建立了不排水条件下页岩坍塌压力的计算模型。此外,分析了井壁上多余孔隙压力和有效应力的变化,并分析了Skempton孔隙压力参数对塌陷压力的影响。多余的孔隙压力随着钻井液密度的增加而减小。多余的孔隙压力和坍塌压力都随着Skempton孔隙压力参数的增加而增加。研究结果为确定页岩地层中的钻井液密度提供了参考。

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