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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Analysis of friction-induced limit cycling in an experimental drill-string system
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Analysis of friction-induced limit cycling in an experimental drill-string system

机译:实验钻柱系统中的摩擦引起的极限循环分析

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In this paper we aim for an improved understanding of the causes for torsional vibrations that appear in rotary drilling systems used for the exploration of oil and gas. For this purpose, an experimental drill-string setup is considered. In that system, torsional vibrations with and without stick-slip are observed in steady state. In order to obtain a predictive model, a discontinuous static friction model is proposed. The steady-state behavior of the drill-string system is analyzed both numerically and experimentally. A comparison of numerical and experimental bifurcation diagrams indicates the predictive quality of the model. Moreover, specific friction model characteristics can be linked to the existence of torsional vibrations with and without stick-slip.
机译:在本文中,我们旨在更好地理解用于石油和天然气勘探的旋转钻井系统中出现的扭转振动的原因。为此,考虑使用实验钻柱设置。在该系统中,在稳态下观察到有和没有粘滑的扭转振动。为了获得预测模型,提出了一种不连续的静摩擦模型。数值和实验分析了钻柱系统的稳态行为。数值和实验分叉图的比较表明了模型的预测质量。此外,特定的摩擦模型特性可以与存在和不存在粘滑的扭转振动相关联。

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