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Mechanical-Thermal-Chemical Coupled Research of Wellbore Stability in Jabung Oil Field, Indonesia

机译:济南油田井眼稳定性机械热化学耦合研究

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The Jabung oilfield in Indonesia is characterized by complex geological structural movement, large tectonic stress and high temperature gradient. Accidents such as borehole collapse and sticking were frequently encountered when drilling shale formations, which often result in serious damage. In this paper, a series of experiments were conducted to evaluate the performance of shale in drilling fluid, including linear expansion rate evaluation tests and rolling recovery evaluation tests. Also X-ray diffraction was used to analyze the mineral composition of shale. The mechanical parameters of shale were obtained through statistical analysis. By using ABAQUS software, the temperature difference induced by thermal stress distribution was analyzed. After that, the borehole stress distribution was determined by coupling the additional stress with in-situ stress. Finally, based on borehole stability mechanical models, the effects of well trajectory on borehole stability were analyzed. We found that the chemical properties of drilling fluid, wellbore trajectory and temperature has a great influence on wellbore stability, and the impact of temperature changes and of well trajectory are the largest factor.
机译:印度尼西亚的Jabung油田的特点是复杂地质结构运动,大构造应力和高温梯度。在钻孔地层时经常遇到钻孔塌陷和粘附的事故,这通常会导致严重损坏。在本文中,进行了一系列实验,以评估页岩在钻井液中的性能,包括线性膨胀速率评估测试和滚动回收评估试验。 X射线衍射也用于分析页岩的矿物成分。通过统计分析获得页岩的机械参数。通过使用ABAQUS软件,分析了热应力分布引起的温度差异。之后,通过用原位应力偶联额外的应力来确定钻孔应力分布。最后,基于钻孔稳定性机械模型,分析了井轨迹对钻孔稳定性的影响。我们发现,钻井液,井眼轨迹和温度的化学性质对井壁稳定性有很大的影响,以及温度变化和井眼轨迹的影响是最大的因素。

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