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The influence of solute concentration and temperature of drilling fluids on wellbore failure in tight formation

机译:溶质浓度和钻井液温度在井眼性闭合井下形成的影响

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摘要

The performance of drilling fluids influences the efficiency of drilling operations. The near-wellbore pore pressure and stress distribution will change with time due to the hydraulic, chemical and thermal potential gradients between the drilling and formation fluids, resulting in wellbore instability during drilling a tight formation. The pore pressure diffusion equation, which considers the effects of hydraulic diffusion, thermal diffusion, and solute diffusion, is presented and the analytic expressions of the near-wellbore pore pressure and stress distribution induced by pore pressure change and temperature stress are presented. An example is used to study the influence of the temperature and solute concentration on the near-wellbore pore pressure and effective stress and the degree of wellbore failure with time. The results show that increasing the solute concentration of drilling fluid reduces the pore pressure but increases the radial and tangential effective stress. In addition, decreasing drilling fluid temperature reduces the pore pressure and tangential effective stress but increases the radial effective stress, both of which are beneficial to wellbore stability. When wellbore failure occurs, increasing the drilling fluid temperature will cause a slight increase of wellbore failure and decreasing the solute concentration may cause a more serious failure in early time.
机译:钻井液的性能影响钻井操作的效率。由于钻孔和地层流体之间的液压,化学和热势梯度,近井筒孔隙压力和应力分布将随时间变化,导致钻孔时井眼不稳定。提出了一种孔隙压力扩散方程,其考虑了液压扩散,热扩散和溶质扩散的影响,并提出了通过孔隙压力变化和温度应力诱导的孔隙孔隙压力和应力分布的分析表达。一个例子用于研究温度和溶质浓度对近井眼孔隙压力和有效应力的影响以及随时间的井筒衰竭程度。结果表明,增加钻井液的溶质浓度降低了孔隙压力,但增加了径向和切向有效应力。此外,降低钻井液温度降低孔隙压力和切向有效应力,但增加了径向有效应力,这两者都有利于井眼稳定性。当发生井筒故障时,增加钻井液温度会导致井筒失效的略微增加,并且溶质浓度降低可能在早期发生更严重的失败。

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