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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Control System Design for Active Lubrication With Theoretical and Experimental Examples
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Control System Design for Active Lubrication With Theoretical and Experimental Examples

机译:主动润滑控制系统设计及理论和实验实例

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This work focuses on the theoretical and experimental behavior of rigid rotors controlled by tilting-pad journal bearings with active oil injection. Initially the mathematical model of the active bearing is presented: The equations that describe the dynamics of hydraulic actuators are introduced into the equations of the lubricant, resulting in a new form of Reynolds' equation for active lubrication. The global model of the system is obtained by ' coupling the equation of motion of the rigid rotor with the stiffness and damping of the active oil film. This global model is then used to design the control system of the active bearing based on root locus curves. The active system stability is analyzed by calculating its eigenvalues and frequency response curves. The theoretical and experimental results show that this kind of bearing can significantly reduce the vibration level of rotating machinery.
机译:这项工作的重点是通过带有主动注油的可倾瓦式滑动轴承控制的刚性转子的理论和实验性能。首先介绍了主动轴承的数学模型:将描述液压执行器动力学的方程式引入到润滑油方程式中,从而形成了用于主动润滑的雷诺方程式的新形式。该系统的整体模型是通过将刚性转子的运动方程与活性油膜的刚度和阻尼耦合而获得的。然后,该全局模型用于基于根轨迹曲线设计主动轴承的控制系统。通过计算其特征值和频率响应曲线来分析有源系统的稳定性。理论和实验结果表明,这种轴承可以显着降低旋转机械的振动水平。

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