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Nonholonomic dynamics of drill string bit whirling in a deep bore-hole

机译:深孔旋转钻柱钻头的非完整动力学

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This article studies the problem of wirl vibrations of a rotating drill string bit under conditions of its friction interaction with the bore-hole bottom surface at the wandering contact point. The mechanism of the bit spinning and rolling without sliding on the rigid surface has been analyzed. To study the wirl vibrations, the methods of nonholonomic mechanics are used. As an example, spherical bit whirling on spherical bore-hole bottom is considered. The kinematic inducement of the rotating bit motion without sliding is shown to be the main cause of its stability loss. The detailed study of the bit whirling revealed three types of its stable and unstable motions associated with direct and inverse rolling as well as pure spinning. It is found that the most detectable influence on dynamics of the system and its stability is exerted by the overall stiffness of the drill string tube, which depends on parameters of compressive axial force and torque and diminishes as their critical values are approached.
机译:本文研究了旋转钻柱在漂移接触点与钻孔底面的摩擦相互作用条件下的旋转振动问题。分析了钻头在刚性表面上不滑动的自旋和滚动机理。为了研究涡流振动,使用了非完整力学方法。例如,考虑在球形钻孔底部上旋转球形钻头。运动钻头运动而没有滑动的运动诱因被证明是其稳定性损失的主要原因。钻头旋转的详细研究揭示了与直接和反向滚动以及纯旋转相关的三种稳定和不稳定运动。发现对系统动力学及其稳定性的最可检测的影响是由钻柱管的整体刚度引起的,该刚度取决于压缩轴向力和扭矩的参数,并且随着接近其临界值而减小。

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