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Rock-bit interaction effects on high-frequency stick-slip vibration severity in rotary drilling systems

机译:旋转钻井系统中高频粘滞振动严重程度的摇滚比特相互作用

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Purpose - The drill string vibrations can create harmful effects on drilling performance because they generate the stick-slip phenomenon which reduces the quality of drilling and decreases the penetration rate and may affect the robustness of the designed controller. For this reason, it is necessary to carefully test the different rock-bit contact models and analyze their influences on system stability in order to mitigate the vibrations. The purpose of this paper is to investigate the effects of rock-bit interaction on high-frequency stick-slip vibration severity in rotary drilling systems. Design/methodology/approach - The main objective of this study is an overview of the influence of the rock-bit interaction models on the bit dynamics. A total of three models have been considered, and the drilling parameters have been varied in order to study the reliability of the models. Moreover, a comparison between these models has allowed the determination of the most reliable function for stick-slip phenomenon. Findings - The torsional model with three degrees of freedom has been considered in order to highlight the effectiveness of the comparative study. Based on the obtained results, it has been concluded that the rock-bit interaction model has big influences on the response of the rotary drilling system. Therefore, it is recommended to consider the results of this study in order to design and implement a robust control system to mitigate harmful vibrations; the practical implementation of this model can be advantageous in designing a smart rotary drilling system. Originality/value - Many rock-bit functions have been proposed in the literature, but no study has been dedicated to compare them; this is the main contribution of this study. Moreover, a case study of harmonic torsional vibrations analysis has been carried out in well-A, which is located in an Algerian hydrocarbons field, the indices of vibrations detection are given with their preventions.
机译:目的 - 钻弦振动可以对钻井性能产生有害影响,因为它们产生了降低钻孔质量的耐粘性现象,并且可以影响设计控制器的鲁棒性。因此,有必要仔细测试不同的摇滚位接触型号,并分析它们对系统稳定性的影响,以减轻振动。本文的目的是探讨岩石比特相互作用对旋转钻井系统中高频粘滑振动严重程度的影响。设计/方法/方法 - 本研究的主要目的是概述岩石位交互模型对位动态的影响。已经考虑了共有三种模型,并且已经改变了钻井参数以研究模型的可靠性。此外,这些模型之间的比较允许确定可粘滑现象的最可靠功能。研究结果 - 已经考虑了具有三个自由度的扭转模型,以突出比较研究的有效性。基于所获得的结果,已经得出结论,岩石位相互作用模型对旋转钻井系统的响应具有很大的影响。因此,建议考虑本研究的结果,以设计和实施强大的控制系统来减轻有害振动;该模型的实际实现在设计智能旋转钻井系统方面可以是有利的。创意/值 - 在文献中提出了许多摇摆功能,但没有学习致力于比较它们;这是本研究的主要贡献。此外,对谐波扭转振动分析的案例研究已经在良好的A中进行,其位于阿尔及利亚烃场,振动检测索引以其预防。

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