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Hopf bifurcation analysis of a rotor/seal system

机译:转子/密封系统的Hopf分叉分析

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The Hopf bifurcation behaviour of a symmetric rotor, seal system was investigated using Muszynska's non-linear seal fluid dynamic force model. For a perfectly balanced system, the instability from certain critical equilibrium positions is proved to be the result of Hopf bifurcation and only the supercritical type is found for a specific rotor system using Poore's algebraic criteria. Hence, a stable periodic orbit bifurcates from the critical equilibrium position after the threshold speed is exceeded. Due to the dimensionless whirl frequency being found to be close to 1/2 over quite a large range of system parameters, the periodically perturbed Hopf bifurcation in 1/2 subharmonic resonance is dealt with for an imbalanced rotor system. The bifurcation of the averaged system, obtained using the centre manifold procedure and averaging method, is analyzed. The results show that non-synchronized whirl of the imbalanced rotor can either be a quasi-periodic motion resulting from a Hopf bifurcation, or a half-frequency whirl from period doubling bifurcation, determined by the structure parameters of the system and operation conditions. Numerical simulation verifies the analytical results. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 17]
机译:使用Muszynska的非线性密封件流体动力模型研究了对称转子密封系统的Hopf分叉行为。对于一个完美平衡的系统,某些临界平衡位置的不稳定性被证明是Hopf分叉的结果,并且对于特定的转子系统,使用Poore代数准则只能找到超临界类型。因此,在超过阈值速度之后,稳定的周期性轨道从临界平衡位置分叉。由于发现在相当大的系统参数范围内无因次旋转频率接近1/2,因此对于不平衡的转子系统,要处理1/2次谐波谐振中的周期性扰动Hopf分叉。分析了使用中心流形程序和平均方法获得的平均系统的分叉。结果表明,不平衡转子的非同步旋转可能是由Hopf分叉产生的准周期运动,也可能是周期倍增分叉产生的半周期旋转,这取决于系统的结构参数和运行条件。数值模拟验证了分析结果。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:17]

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