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Mechanism analysis of friction reduction in coiled tubing drilling with axial vibratory tool

机译:轴向振动工具卷绕管钻摩擦减小机理分析

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In order to investigate the friction reduction mechanism of the hydraulic axial vibratory tool in coiled tubing drilling (CTD), a dynamic model is proposed by introducing the Coulomb friction term to the wave equations in this paper. Then a retrogressed case is selected to validate the model and both the results of two models display an excellent consistency. Finally, the effect of tool parameters (frequency, average drag force, installation position), CT parameters (size, rate of penetration) and wellbore parameters (coefficient of friction, wellbore curvature) on the tool performance are analyzed with the proposed model. The results indicate that the axial force reduction at the vertical end is mainly affected by the frequency, amplitude, installation position and coefficient of friction (CoF), whereas the CT size, rate of penetration (ROP) and wellbore curvature affect the tool performance slightly. Based on the study, it reveals the action mechanism of the tool in CTD that the force reduction mainly caused by the direct traction of the tool and the corresponding friction reduction at the curved and buckling section.
机译:为了研究螺旋管钻孔(CTD)中液压轴向振动工具的摩擦还原机理,通过将库仑摩擦术语引入本文的波动方程来提出动态模型。然后选择retrogered案例来验证模型,两种模型的结果都显示出优异的一致性。最后,用所提出的模型分析了刀具参数(频率,平均拖曳力,安装位置),CT参数(尺寸,穿透速率)和井筒参数(摩擦系数,井筒曲率系数)。结果表明,垂直端的轴向力降低主要受频率,幅度,安装位置和摩擦系数(COF)的影响,而CT尺寸,渗透率(ROP)和井筒曲率略微影响工具性能。基于该研究,它揭示了CTD工具的动作机制,即力减少主要由工具的直接牵引和弯曲和屈曲部分的相应摩擦减少引起的力。

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