有时滞的垂直钻柱扭振被动与主动控制方法的设计与比较

Baher Pishbahar, H. Moradi
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引用次数: 0

摘要

在石油钻井系统中,振动是造成经济损失的主要原因之一。本文建立了一种具有时间延迟的垂直钻具柱非线性连续模型,用于研究垂直钻具柱的扭转振动。采用Karnopp摩擦模型模拟了地面与钻头相互作用过程中的粘滑现象。在下面,研究了两种不同的方法来减少扭转振动和控制钻柱的粘滑现象。在第一种方法中,研究了改变系统参数对减小扭振的影响。在第二种方法中,采用杆位法控制钻柱的扭转振动。这样,对应于系统的期望响应,通过参数空间的搜索,找到系统闭环极点的合适位置。通过所设计的控制系统,可以观察到扭振被吸收,粘滑现象被抑制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and comparison of passive and active control methods in absorbing torsional vibrations of a vertical drilling string with time delay
In oil drilling systems, vibrations are one of the main sources of economic losses. In this paper, a non-linear continuous model with time delay for the vertical drilling string is proposed to study the torsional vibrations of the drilling string. The Karnopp friction model is used to simulate the stick-slip phenomenon in the interaction between the ground and the drill. In the following, two different methods for reducing torsional vibrations and controlling the stick-slip phenomenon of the drilling string are investigated. In the first method, the effect of changing the system parameters on reducing the torsional vibrations is investigated. In the second method, the torsional vibrations of the drill string are controlled using the pole placement method. In this way, corresponding to the desired response of the system, with the search of parameters space, the appropriate location of the closed-loop poles of the system is found. With the designed control system, it is observed that the torsional vibrations are absorbed and the stick-slip phenomenon is damped.
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