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State dependent delayed drill-string vibration: Theory, experiments and new model

机译:国家依赖延迟钻弦振动:理论,实验和新模型

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We have reviewed the development and the analysis of the coupled two degrees-of-freedom model of drill-string vibration, which assumes a state-dependent time delay and a viscous damping for both the axial and torsional vibration. This model corrects the instability deficiencies of the previous models but it is still based on a uniform angular distribution of blades on a drill-bit, which can lead to unrealistic regenerative types of instability. However, the model sheds some lights on the origin and the interplay between stick-slip and bit-bounce, the dangerous dynamic phenomena encountered during rotary drilling. The experimental rig developed by the Centre of Applied Dynamics Research at the University of Aberdeen is used to show some shortcomings of this model and to develop a new more realistic one. The new model assuming a non-uniform distribution of blades for drag type drill-bits is proposed.
机译:我们已经审查了钻弦振动耦合的两度自由模模型的开发和分析,这假设具有轴向和扭转振动的状态依赖的时间延迟和粘性阻尼。该模型校正了以前模型的不稳定缺陷,但仍然基于钻头上的刀片的均匀角度分布,这可能导致不切实际的再生类型的不稳定性。然而,模型在旋转钻孔期间遇到的粘滑和位反弹之间的起源和相互作用的灯光界面脱落。阿伯丁大学应用动力学研究中心开发的实验钻机用于展示该模型的一些缺点,并开发一种新的更现实的缺点。提出了新模型,假设用于拖动型钻头的刀片的不均匀分布。

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