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Modal uncoupling of damped gyroscopic systems

机译:阻尼陀螺系统的模态解耦

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A new approach for uncoupling the equations of motion typical for rotordynamical systems is presented. The method does not neglect the speed-dependent effects, such as gyroscopic effects, and can be particularly valuable in the controller design of actively controlled rotors. In the presence of hysteretic type of damping, the resulting uncoupled gyroscopic systems come with an equivalent viscous damping, equivalent in a sense of yielding the same natural frequency and decay rate. The approach is illustrated through three examples of technical interest: a Jeffcott rotor with hysteretic damping, a Stodola-Green rotor, and a rotor of a small gas turbine. The generated results demonstrate that the developed approach is correct and straightforward. (C) 2001 Academic Press. [References: 13]
机译:提出了一种解耦转子动力系统典型运动方程的新方法。该方法不会忽略诸如陀螺效应之类的与速度有关的影响,并且在主动控制转子的控制器设计中可能特别有价值。在存在迟滞类型的阻尼的情况下,所产生的非耦合陀螺仪系统具有等效的粘性阻尼,在产生相同的固有频率和衰减率的意义上等效。通过三个具有技术意义的示例说明了该方法:带滞后阻尼的Jeffcott转子,Stodola-Green转子和小型燃气轮机的转子。产生的结果表明,所开发的方法是正确和直接的。 (C)2001学术出版社。 [参考:13]

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