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Stick-Slip and Bit-Bounce Interaction in Oil-Weil Drillstrings

机译:油We钻杆中的粘滑和弹跳相互作用

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摘要

Drillstring vibrations and in particular stick-slip and bit-bounce are detrimental to oil-well drilling operations. Controlling these vibrations is essential because they may cause equipment failures and damage to the oil-well. A simple model that adequately captures the dynamics is used to simulate the effects of varying operating conditions on stick-slip and bit-bounce interactions. It is shown that the conditions at the bit/formation interface, such as bit speed and formation stiffness, are major factors in shaping the dynamic response. Due to the varying and uncertain nature of these conditions, simple operational guidelines or active rotary table control strategies are not sufficient to eliminate both stick-slip and bit-bounce. It is demonstrated that an additional active controller for the axial motion can be effective in suppressing both stick-slip and bit-bounce. It is anticipated that if the proposed approach is implemented, smooth drilling will be possible for a wide range of conditions.
机译:钻柱振动,尤其是粘滑和弹跳,对油井钻探操作有害。控制这些振动至关重要,因为它们可能导致设备故障并损坏油井。一个可以充分捕捉动态特性的简单模型用于模拟各种操作条件对粘滑和位弹跳相互作用的影响。结果表明,钻头/地层界面处的条件,例如钻头速度和地层刚度,是影响动态响应的主要因素。由于这些条件的变化和不确定性,简单的操作指南或主动转盘控制策略不足以消除粘滑和弹跳现象。已经证明,用于轴向运动的附加主动控制器可以有效抑制粘滑和钻头弹跳。可以预料,如果实施所提出的方法,则在各种情况下都可以进行平滑钻孔。

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