首页> 外文期刊>Shock and vibration >Study of Radial Vibration Impact on Friction and Torque of Rotary Drill String
【24h】

Study of Radial Vibration Impact on Friction and Torque of Rotary Drill String

机译:径向振动影响对旋转钻柱摩擦和扭矩的研究

获取原文
           

摘要

During extended-reach well drilling, the torque of a rotary drill string is too large in the horizontal section, which results in the failure of the drill string. The effect of radial vibration on the friction and torque of the rotary drill string is unclear. In this work, first, the principle of the impact of radial vibration on the friction and torque of the rotary drill string in the horizontal section is analysed. Then, joints with an elliptical outer edge of the section are designed, which can generate low-amplitude vibration as the drill string rotates owing to the interaction with the wellbore wall. The radial vibration characteristics can be tuned by changing the major to minor radius ratio of the ellipse. A self-developed experimental device was designed to test the performance of tools with reduced friction and torque. The drill string torque with different penetration rates, rotation speeds, and ratios of the major radius to minor radius of the ellipse were systematically studied. The experimental results show that the average and the maximum amplitudes of the torque fluctuation first decrease to the lowest value and then increase with the increase of the ratio. When the ratio reaches 1.065, the average and the maximum amplitudes of the torque fluctuation evidently reduce; therefore, a joint with a ratio of 1.065 can effectively reduce frictional torque. The average torque reduces when the penetration rate and rotation speed decrease. At rotation speeds of 45 and 60?r/min, the maximum amplitude of torque fluctuation increases first and then decreases with an increase in penetration rate, and it reaches a maximum value at a penetration rate of 22.5?m/h. The fundamental frequency of torque fluctuation is almost linearly related to rotation speed, which is irrelevant to the penetration rate and the ratio of major to minor radius of the ellipse.
机译:在延长覆盖井钻井期间,水平部分的旋转钻柱的扭矩太大,这导致钻柱的故障。径向振动对旋转钻弦摩擦和扭矩的影响尚不清楚。在这项工作中,分析了径向振动对水平部分中旋转钻柱的摩擦和扭矩的影响的原理。然后,设计了具有椭圆形外边缘的关节,设计,这可以产生低振幅振动,因为钻头由于与井筒壁的相互作用而旋转。可以通过改变椭圆的微小半径比来调谐径向振动特性。自行开发的实验装置旨在测试具有减少摩擦和扭矩的工具的性能。系统地研究了具有不同穿透速率,旋转速度和椭圆的小半径的旋转速率,旋转速度和比率的钻头扭矩。实验结果表明,扭矩波动的平均值和最大幅度首先降低到最低值,然后随比比率的增加而增加。当比率达到1.065时,扭矩波动的平均值和最大幅度明显减少;因此,具有1.065的比率的关节可以有效地减少摩擦扭矩。当穿透速率和转速减小时,平均扭矩降低。在45和60?r / min的旋转速度下,首先增加扭矩波动的最大幅度,然后随着渗透率的增加而降低,并且渗透率为22.5μm/ h的渗透率达到最大值。扭矩波动的基本频率几乎与旋转速度线性相关,与渗透率无关,与椭圆的微小半径的主要速度无关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号