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首页> 外文期刊>Journal of Petroleum Science & Engineering >Risk-controlled wellbore stability analysis in anisotropic formations
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Risk-controlled wellbore stability analysis in anisotropic formations

机译:各向异性地层的风险控制井眼稳定性分析

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摘要

The paper presents a semi-analytical solution for the stability of inclined boreholes drilled in isotropic and anisotropic formations. Conventional analytical or semi-analytical models are designed to yield no borehole collapse failure along the borehole wall. However, in deep wells, where there are high hoop stresses acting on the borehole wall, it is difficult to apply the safe mud weight produced by these ubiquitous models. The proposed solution in this work imposes a constraint on how much failure will occur along the borehole wall. This risk-controlled stability analysis will produce a safe mud window that can be realistically achieved during drilling operations. Analytical solutions for stress distribution for isotropic and anisotropic rocks are presented. In addition, a solution for the upper limit for the mud window to prevent tensile failure is developed. The initial poroelastic or "undrained" drilling effect on pore pressure is also incorporated in the discussed models. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文针对在各向同性和各向异性地层中钻出的倾斜井眼的稳定性提出了一种半解析解。常规的分析或半分析模型设计为不会在井壁上产生井壁坍塌故障。然而,在深井中,在井壁上作用高环向应力的情况下,很难应用这些普遍存在的模型产生的安全泥浆重量。在这项工作中提出的解决方案对沿井壁将发生多少破坏施加了约束。这种风险控制的稳定性分析将产生一个安全的泥浆窗口,可以在钻井作业期间实际实现。提出了各向同性和各向异性岩石应力分布的解析解。另外,开发了用于防止拉伸破坏的泥窗上限的解决方案。对孔隙压力的初始孔隙弹性或“不排水”钻井效果也纳入了讨论的模型中。 (C)2015 Elsevier B.V.保留所有权利。

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