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首页> 外文期刊>Journal of vibration and control: JVC >On nonlinear perturbation analysis of a structure carrying a circular cylindrical liquid tank under horizontal excitation
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On nonlinear perturbation analysis of a structure carrying a circular cylindrical liquid tank under horizontal excitation

机译:水平激励下圆柱形液体罐的结构非线性扰动分析

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摘要

The lateral response of a single degree of freedom structural system containing a rigid circular cylindrical liquid tank under harmonic and earthquake excitations at a 1:2 autoparametric resonance case is considered. The governing nonlinear differential equations of motion for the combined system are solved by means of a multiple scales method considering the first three liquid sloshing modes (1,1), (0,1), and (2,1), under horizontal excitation. The fixed points of the gyroscopic type of governing differential equations are determined and their stability is investigated employing the perturbation method. The obtained results reveal an increase in the stability region for a single-mode response with respect to the excitation amplitude. The saturation phenomenon is observed in the decoupled modes of the system; however, the structural mode and the first anti-symmetric mode of liquid are a combination of the saturated mode and another mode whose scale factor is crucial for the structural response. The results of perturbation analysis are in good agreement with results obtained from numerical methods.
机译:考虑了在谐波和地震激发下的单一自由度结构系统的单一自由度结构系统的横向响应,在1:2自动轨道激发下。通过考虑水平激发的前三种液体晃动模式(1,1),(0,1)和(2,1),通过多种尺度方法解决了组合系统的管道非线性微分方程。确定陀螺仪类型的控制型微分方程的固定点,并研究了采用扰动方法的稳定性。所得结果揭示了相对于激发幅度的单模响应的稳定区域的增加。在系统的去耦模式中观察到饱和现象;然而,结构模式和第一抗对称模式是饱和模式和其他模式的组合,其比例因子对于结构响应至关重要。扰动分析结果与从数值方法获得的结果吻合良好。

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