钻头与井底的旋转相互作用

N. Musa, V. Gulyayev, L. Shevchuk, Hasan Aldabas
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引用次数: 0

摘要

本文对钻头与井底岩石平面接触相互作用下的旋转进行了理论模拟。钻头被认为是一个表面不均匀的绝对刚性椭球体。它连接在旋转弹性钻柱的下端。在扰动状态下,钻头可以在井底不滑动地滚动,进行旋转振动(最大黏结力不超过极限库仑摩擦时纯滚动的动力平衡模型)。为了描述这些运动,提出了非完整动力学模型,推导了本构偏微分方程。利用它们,分析了椭圆形和扁圆形钻头的旋转振动,计算了内聚(摩擦)力的函数。结果表明,弹性钻柱-椭球钻头系统在轴向力、扭矩和角速度参数作用下,均可获得稳定或不稳定的接近临界欧拉值的旋转模式。所发现的运动模式与凯尔特石的运动模式的类比是建立的。结果表明,椭球位可以像椭球凯尔特石那样停止旋转振动并改变圆周运动方向。当这种情况发生时,扁椭球体钻头的轨迹具有更复杂的路径和不规则性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Whirl Interaction of a Drill Bit with the Bore-Hole Bottom
This paper deals with the theoretic simulation of a drill bit whirling under conditions of its contact interaction with the bore-hole bottom rock plane. The bit is considered to be an absolutely rigid ellipsoidal body with uneven surface. It is attached to the lower end of a rotating elastic drill string. In the perturbed state, the bit can roll without sliding on the bore-hole bottom, performing whirling vibrations (the model of dynamic equilibrium with pure rolling when maximum cohesive force does not exceed the ultimate Coulombic friction). To describe these motions, a nonholonomic dynamic model is proposed, constitutive partial differential equations are deduced. With their use, the whirling vibrations of oblong and oblate ellipsoidal bits are analyzed, the functions of cohesive (frictional) forces are calculated. It is shown that the system of elastic drill string and ellipsoidal bit can acquire stable or unstable whirl modes with approaching critical Eulerian values by the parameters of axial force, torque and angular velocity. The analogy of the found modes of motions with ones of the Celtic stones is established. It is shown that the ellipsoidal bits can stop their whirling vibrations and change directions of their circumferential motions in the same manner as the ellipsoidal Celtic stones do. As this takes place, the trajectories of the oblate ellipsoidal bits are characterized by more complicated paths and irregularities.
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