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Analysis of the main factors affecting bottom hole assembly Re-entry into main hole in forward drilling of fishbone wells

机译:影响底部孔组件重新进入的主要因素分析钓鱼井前进钻孔的主孔

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Wellbore re-entry is one of the critical technologies in fishbone well drilling. In the sequence of forward drilling, the main hole is designed as a low wellbore and the branched hole is designed as a high wellbore to ensure that the bottom hole assembly (BHA) can re-enter the main wellbore. However, there is no quantitative theoretical analysis regarding the reliability of wellbore re-entry at present. In order to analyze the reliability of the main hole re-entry, an analysis method was provided in this paper. Firstly, a detailed description of the wellbore model around the sidetracking point was built, which can consider the different build-up rate and bending direction of the main and branched hole. Secondly, a mechanical model based on the elastic rod theory was established to calculate the force and deformation of drill strings in the wellbore and a re-entry coefficient was introduced to evaluate the reliability of the main hole re-entry. Moreover, the effects of tool face angle, build-up rate of wellbore, junction wall geometry, and motor structure on the re-entry coefficient are analyzed. Finally, the main controlling factors were analyzed to distinguish the influence degree of different parameters on the re-entry coefficient. From the results, the angle between the bending direction of the branched hole and the tool face of the BHA is the decisive factor in the process of the main hole re-entry. The BHA should be controlled so that the angle is greater than 90 degrees as much as possible. If such angle is less than 90 degrees, the change of wellbore build-up rate, junction wall geometry, and motor structure can be used to increase the re-entry coefficient, such as increasing the build-up rate of the branched hole, wellbore enlargement rate, depth of the slot in the junction wall, and ridge width of the junction wall. Meanwhile, decrease the angle of bent housing, distance between the bending point and the top of bit, and outer diameter of the body stabilizer of the motor can also increase the reentry coefficient. Among the effects of re-entry coefficient, the main controlling factors are the bend point position and the angle of bent housing.
机译:Wellbore重新进入是鱼底钻井的重要技术之一。在前进钻孔的顺序中,主孔设计为低井筒,并且支化孔设计为高井筒,以确保底部孔组件(BHA)可以重新进入主井筒。然而,目前井眼重新进入的可靠性没有定量的理论分析。为了分析主孔重新进入的可靠性,本文提供了一种分析方法。首先,建造了侧旋点周围的井筒模型的详细描述,这可以考虑主和分支孔的不同积聚速率和弯曲方向。其次,建立了基于弹性棒理论的机械模型,以计算井筒中钻弦的力和变形,并引入了重新进入系数以评估主孔重新进入的可靠性。此外,分析了刀具面角,井筒,结壁几何形状和电动机结构对重新进入系数的影响。最后,分析了主要控制因子以区分不同参数对重新进入系数的影响程度。从结果,支化孔的弯曲方向与BHA的工具面之间的角度是主孔重新进入过程中的决定性因素。应该控制BHA,使角尽可能大于90度。如果这种角度小于90度,则可以使用井筒积聚速率,接合壁几何形状和电动机结构的变化来增加重新进入系数,例如增加分支孔的井筒的积累率放大速率,结壁中的槽的深度,以及连接壁的脊宽度。同时,减小弯曲壳体的角度,弯曲点与比特顶部之间的距离,并且电动机的体稳定器的外径也可以增加再入系数。在重新进入系数的影响中,主要控制因子是弯曲点位置和弯曲壳体的角度。

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