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A fully coupled thermo-poroelastoplasticity analysis of wellbore stability

机译:井筒稳定性的全耦合热弹塑性分析

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Wellbore instability problem is one of the main problems that met frequently during drilling, particularly in high temperature, high pressure (HPHT) formations. There are large amount of researches about wellbore stability in HPHT formations, which based on the thermo-poroelastic theory and some achievements were obtained; however, few studies have investigated on the fully coupled thermo-poroelastoplasticity analysis of wellbore stability, especially the analysis of wellbore stability while the filter cake formed. Therefore, it is very necessary to do some work. In this paper, the three-dimensional wellbore stability model which overall considering the effects of fully coupled thermo-poroelastoplasticity and filter cake is established based on the finite element method and Drucker-Prager failure criterion. The distribution of pore pressure, wellbore stress and plastic deformation under the conditions of different mud pressures, times and temperatures have been discussed. The results obtained in this paper can offer a great help on understanding the distribution of pore pressure and wellbore stress of wellbore in the HPHT formation for drilling engineers.
机译:井筒失稳问题是钻井过程中经常遇到的主要问题之一,特别是在高温高压(HPHT)地层中。基于热-孔隙弹性理论,对高温高压岩层中的井筒稳定性进行了大量研究,并取得了一些成果。但是,很少有研究对井眼稳定性进行全耦合热-弹塑性分析,特别是在滤饼形成时对井眼稳定性的分析。因此,非常有必要做一些工作。本文基于有限元法和Drucker-Prager破坏准则,建立了全面考虑热弹塑性与滤饼耦合效应的三维井眼稳定性模型。讨论了在不同泥浆压力,时间和温度条件下孔隙压力,井筒应力和塑性变形的分布。本文的研究结果可为钻井工程师了解HPHT地层中的孔隙压力和井眼应力分布提供很大的帮助。

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