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首页> 外文期刊>Journal of Mechanical Science and Technology >Dynamic behavior analysis of push-the-bit rotary steerable bottom hole assembly
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Dynamic behavior analysis of push-the-bit rotary steerable bottom hole assembly

机译:按位旋转可转向底孔组件的动态行为分析

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Rotary steerable drilling technology is currently an advanced technology in the field of drilling engineering. A good understanding of dynamic behavior of rotary steerable system will benefit the drilling progress. Aimed at push-the-bit type of rotary steerable tool, finite element method was employed to model the rotary steerable bottom hole assembly (RSBHA) and establish the motion equation. Contact interaction between drill string and wellbore wall was analyzed and taken as the constraint condition in solving RSBHA motion equation. Force applied by steering pads was as the external force acting at the pads node. Then RSBHA motion state and bit lateral force were obtained by using Newmark method to solve the motion equation. A case was given and effects of influencing factors were analyzed. The results show that stick-slip phenomenon occurs under 60 r/min rotary speed condition and disappears when rotary speed rises to 90 r/min. Fully developed backward whirl comes into being at the near-bit stabilizer when rotary speed increases to 120 r/min. High weight on bit intensifies bit torsional vibration while larger pads' steering force decreases the bit torsional vibration. Upper stabilizer plays a part in weakening RSBHA backward whirl under high rotary speed condition but reduces the inclination force. Time average of bit lateral force is mainly determined by pads' steering force. Based on the results, corresponding suggestions were proposed to make the RSBHA be better used in the field applications.
机译:旋转可操纵钻井技术目前是钻井工程领域的先进技术。对旋转可操纵系统的动态行为的良好理解将有利于钻井进展。针对按位式的旋转转向工具,采用有限元方法来模拟旋转可转向底孔组件(RSBHA)并建立运动方程。分析钻柱和井筒壁之间的接触相互作用,并作为求解RSBHA运动方程的约束条件。转向焊盘施加的力作为作用在焊盘节点的外力。然后通过使用纽马克方法来解决运动方程来获得RSBHA运动状态和钻头横向力。给出了一个案例,分析了影响因素的影响。结果表明,在60 r / min旋转速度条件下发生粘滑现象,当旋转速度上升至90 r / min时消失。当旋转速度增加到120 r / min时,完全开发后的后向旋转进入近比特稳定剂。位高重量加强了位扭转振动,而较大的焊盘转向力会降低位扭转振动。上稳定器在高旋转速度条件下效率削弱RSBHA后向旋转,但减少了倾斜力。钻头横向力的时间平均值主要由垫的转向力决定。根据结果​​,提出了相应的建议,使RSBHA更好地用于现场应用程序。

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