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The Effects of Pore Pressure and Temperature Difference Variation on Borehole Stability

机译:孔压和温差变化对井眼稳定性的影响

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Considering that drilling fluid filtration and the temperature difference between borehole wall rock and drilling fluid can cause the stress variation of the borehole wall. The stress distribution model was derived under the effect of thermal-flow-solid coupling. The safe mud density window calculating model considering pore pressure and temperature difference variation was established according to Moore-Coulomb criterion and borehole wall rock tensile failure criterion. The result calculated by the model can be expressed as follow. (1) When the temperature difference between borehole rock and drilling fluid is constant, with the enhancement of fluid filtration, borehole rock pore pressure increasing, the collapse pressure increasing, breakdown pressure decreasing, the stability of the borehole becomes deteriorating. (2) When the borehole wall rock pore pressure is constant, if drilling fluid makes wall rock temperature decreasing, with the temperature difference increasing, both the collapse pressure and breakdown pressure decreasing, the stability of the borehole becoming deteriorating, it is not conducive to drilling safely. If drilling fluid make wall rock temperature increasing, with the temperature difference increasing, both the collapse pressure and breakdown pressure increasing, the borehole tending to stabilize, it is conducive to drilling safely.
机译:考虑到钻井液的过滤以及井壁岩石与钻井液之间的温差会引起井壁的应力变化。在热流固耦合作用下导出了应力分布模型。根据Moore-Coulomb准则和井壁围岩抗拉破坏准则,建立了考虑孔隙压力和温差变化的安全泥浆密度窗口计算模型。该模型计算的结果可以表示如下。 (1)当井眼与钻井液的温差恒定时,随着流体过滤作用的增强,井眼孔隙压力增加,崩塌压力增加,破坏压力降低,井眼稳定性下降。 (2)当井壁岩石孔隙压力恒定时,如果钻井液使井壁温度降低,则随着温差的增大,崩塌压力和破坏压力均降低,井壁稳定性下降,不利于安全钻孔。如果钻井液使围岩温度升高,则随着温差的增加,崩塌压力和破坏压力都增加,井眼趋于稳定,有利于安全钻井。

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