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首页> 外文期刊>Journal of Vibration and Acoustics >A New Dynamic Model of Coupled Axial-Torsional Vibration of a Drill String for Investigation on the Length Increment Effect on Stick-Slip Instability
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A New Dynamic Model of Coupled Axial-Torsional Vibration of a Drill String for Investigation on the Length Increment Effect on Stick-Slip Instability

机译:钻杆轴向-扭振耦合的新动力学模型,用于研究长度增加对粘滑失稳的影响

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In this paper, a new model is proposed to study the coupled axial-torsional vibration of the drill string. It is assumed that rotary table angular speed is constant and equals to the nominal angular speed of the drill string. In addition, axial displacement of any point on the drill string is considered to be as the sum of rigid-body motion and elastic vibrations. The depth of cut is defined using instantaneous dynamic states instead of using the delayed model as presented in previous researches. A velocity-weakening function is introduced for modeling the behavior of the frictional component of the torque-on-bit (TOB) with respect to the bit angular speed. After discretizing vibration equations, stability analysis of the system is investigated by linearizing the nonlinear system around its steady-state response point. Considering nominal weight-on-bit (WOB) (W_0) and nominal rotational speed (Ω) as the input parameters of the drilling, variation of maximum allowable value of (W_0) is presented with respect to variation of Ω. It is shown that the maximum allowable value of W_0 has an increasing-decreasing behavior with respect to Ω. The effect of drill string upper and lower part lengths is studied on the stability of the system, and practical results are presented both in the condition that W_0 is constant and in the condition that the hook upward force is constant. It is shown that by increasing the drill string length, the system is more exposed to instability, and this must be considered in regulating the input parameters of drilling.
机译:本文提出了一种新的模型来研究钻柱的轴向扭转振动。假设转台角速度是恒定的,并且等于钻柱的标称角速度。另外,钻柱上任何一点的轴向位移被认为是刚体运动和弹性振动的总和。切削深度是使用瞬时动态状态定义的,而不是使用先前研究中介绍的延迟模型来定义。引入了速度减弱功能,以对钻头扭矩(TOB)的摩擦分量相对于钻头角速度的行为进行建模。在将振动方程离散化之后,通过将非线性系统在其稳态响应点附近线性化来研究系统的稳定性分析。将钻头的名义重量(WOB)(W_0)和名义转速(Ω)作为钻孔的输入参数,相对于Ω的变化,给出了(W_0)的最大允许值的变化。可以看出,W_0的最大允许值相对于Ω具有增减行为。研究了钻柱上部和下部长度对系统稳定性的影响,并在W_0恒定的条件下和吊钩向上的力恒定的情况下均给出了实际结果。结果表明,通过增加钻柱长度,系统更容易受到不稳定的影响,在调节钻井的输入参数时必须考虑这一点。

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