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Drag-Reduction Performance Evaluation of Controllable Hybrid Steering Drilling System

机译:可控混合转向钻井系统的减阻性能评估

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The excessive drag/torque and the backing pressure is an important factor that restricts the improvement of the penetration rate and the extension of the drilling in the sliding drilling process of extended-reach wells and horizontal wells. To deal with this problem, this paper developed a novel controllable hybrid steering drilling system (CHSDS) based on the friction-reducing principle of a rotating drill string. The CHSDS is composed of a gear clutch, hydraulic system, and measurement and control system. By controlling the meshing and separation of the clutch with the mud pulse signal, the CHSDS has two working states, which leads to two boundary conditions. Combined with the stiff-string drag torque model, the effects of the drilling parameters on the friction-reducing performance of the CHSDS are analyzed systematically. The results show that the friction reduction effect in the inclined section is the most significant, followed by that in the horizontal section, whereas there is almost no impact in the vertical section. Friction reduction increases with the rotary speed and the drilling fluid density, whereas it decreases with the increase in the surface weight-on-bit and the bit reaction torque. Field tests confirm the separation and meshing function of the CHSDS. The developed controllable hybrid steering and friction-reducing technology provides an alternative approach for the safe and high-efficiency drilling of horizontal wells.
机译:过度拖曳/扭矩和背衬压力是限制延伸井和水平孔的滑动钻井过程中渗透速率和钻孔延伸的重要因素。为了解决这个问题,本文基于旋转钻柱的摩擦降低原理开发了一种新颖的可控混合转向钻井系统(CHSD)。 CHSD由齿轮离合器,液压系统和测量和控制系统组成。通过用泥浆脉冲信号控制离合器的啮合和分离,CHSD具有两个工作状态,这导致两个边界条件。结合僵硬弦拖轮扭矩模型,系统地分析了钻井参数对CHSD摩擦降低性能的影响。结果表明,倾斜部分中的摩擦缩减效果是最重要的,其次是水平部分,而在垂直部分几乎没有影响。摩擦减小随着旋转速度和钻孔流体密度的增加,而且随着表面重量的增加和比特反应扭矩的增加而降低。现场测试确认CHSD的分离和啮合功能。开发的可控混合动力学和摩擦减少技术为水平井的安全和高效钻井提供了一种替代方法。

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