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INVESTIGATION ON EFFECT OF DOWNHOLE VIBRATION FORCE ON DRILLING PERFORMANCE WITH A DYNAMIC BHA MODEL

机译:动态BHA模型研究井底振动力对钻井性能的影响

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A dynamic bottom hole assembly (BHA) model is built with finite element method (FEM) in this paper. This model is used for evaluation the influence of externally added vibration to the BHA system. With this dynamic model along with a general bit-rock interaction formula, the BHA's motion in axial and torsional directions are examined. Parametric study is carried out by varying the parameters of the applied vibration force, including the mean value, amplitude, angular frequency, and the location of this force excitation. The simulation results indicate that externally applied vibration force is indeed able to improve drilling performance. In particular, the mean value and amplitude of the applied force have a almost linear relation with ROP and WOB. The stresses distributions along BHA are investigated as well.
机译:本文采用有限元方法(FEM)建立了动态​​井底总成(BHA)模型。该模型用于评估外部振动对BHA系统的影响。利用该动力学模型以及通用的钻头-岩石相互作用公式,可以检查BHA在轴向和扭转方向上的运动。通过改变所施加的振动力的参数来进行参数研究,包括平均值,振幅,角频率和该力激励的位置。仿真结果表明,外部施加的振动力确实能够改善钻井性能。特别地,所施加的力的平均值和幅度与ROP和WOB具有几乎线性的关系。还研究了沿BHA的应力分布。

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