Synchronization and Stability of a Three Co-Rotating Rotor System Coupled with Springs in a Non-Resonance System

Mingjun Du, Yongjun Hou, T. Tang, Lian Tang, Jialong Wang, Hongbo Gao
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Abstract

With the rapid development of horizontal drilling technology, the drilling fluid shale shaker (DFSS) features high capacity and high efficiency. Hence, a vibrating mechanism of a three co-rotating rotor system coupled with springs is proposed for designing large-sized and heavy-duty vibrating screens in petroleum drilling engineering. To master synchronization of the vibrating system, the dynamic equations of three corotating rotors coupled with springs are first developed based on Lagrange’s equations. Second, synchronous conditions of the system are derived based on the average method, and its stability criterion is obtained by adopting Hamilton’s principle. Furthermore, the influences of various factors, including positional parameters of three motors, stiffness coefficient of the springs and frequency ratio on synchronization behaviour, are numerically analysed in the steady state. Additionally, the Runge–Kutta algorithm with adaptive control is employed to build an electromagnetic coupling model, and the relationships between the synchronization state of the system and its mechanical-electrical coupling characteristics are investigated. Finally, an experimental prototype is designed to validate the theory and numerical analysis. The research result shows that the in-phase synchronization of three co-rotating rotors coupled with springs is easy to implement with the selection of a sufficiently large stiffness.
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非共振系统中耦合弹簧的三共转转子系统的同步与稳定性
随着水平井钻井技术的快速发展,钻井液振动筛具有容量大、效率高的特点。为此,针对石油钻井工程中大型重型振动筛的设计,提出了一种三共转转子系统与弹簧耦合的振动机构。为了控制振动系统的同步,首先在拉格朗日方程的基础上建立了三个旋转转子耦合弹簧的动力学方程。其次,基于平均法推导了系统的同步条件,并采用Hamilton原理得到了系统的稳定性判据。在稳态下,数值分析了三个电机的位置参数、弹簧刚度系数和频率比等因素对同步性能的影响。采用自适应控制龙格-库塔算法建立电磁耦合模型,研究了系统同步状态与其机电耦合特性之间的关系。最后,设计了实验样机,对理论和数值分析进行了验证。研究结果表明,只要选择足够大的刚度,三个共转转子与弹簧耦合的同步是容易实现的。
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