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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Stability analysis of vertical boreholes using the Mogi-Coulomb failure criterion
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Stability analysis of vertical boreholes using the Mogi-Coulomb failure criterion

机译:使用Mogi-Coulomb破坏准则的垂直井眼稳定性分析

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摘要

A main aspect of wellbore stability analysis is the selection of an appropriate rock failure criterion. The most commonly used criterion for brittle failure of rocks is the Mohr-Coulomb criterion. This criterion involves only the maximum and minimum principal stresses, sigma_1 and sigma_3, and therefore assumes that the intermediate stress sigma_2 has no influence on rock strength. As the Mohr-Coulomb criterion ignores the strengthening effect of the intermediate stress, it is expected to be too conservative in estimating the critical mud weight required to maintain wellbore stability. Recently, Al-Ajmi and Zimmerman [Relationship between the parameters of the Mogi and Coulomb failure criterion. Int J Rock Mech Min Sci 2005;42(3):431-39.] developed the Mogi-Coulomb failure criterion, and showed that it is reasonably accurate in modelling polyaxial failure data from a variety of rocks. We then develop a model for the stability of vertical boreholes, using linear elasticity theory to calculate the stresses, and the fully-polyaxial Mogi-Coulomb criterion to predict failure. Our model leads to easily computed expressions for the critical mud weight required to maintain wellbore stability.
机译:井筒稳定性分析的主要方面是选择适当的岩石破坏准则。岩石脆性破坏最常用的准则是Mohr-Coulomb准则。该准则仅涉及最大和最小主应力sigma_1和sigma_3,因此假定中间应力sigma_2对岩石强度没有影响。由于Mohr-Coulomb准则忽略了中间应力的增强作用,因此在估计维持井筒稳定性所需的临界泥浆重量时,预期过于保守。最近,Al-Ajmi和Zimmerman [Mogi和库仑破坏准则的参数之间的关系。 Int J Rock Mech Min Sci 2005; 42(3):431-39。]提出了Mogi-Coulomb破坏准则,并表明该模型在建模各种岩石的多轴破坏数据方面是相当准确的。然后,我们使用线性弹性理论来计算应力,并使用全多轴Mogi-Coulomb准则来预测垂直破坏,从而建立垂直井眼稳定性模型。我们的模型可以轻松计算出维持井筒稳定性所需的临界泥浆重量表达式。

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