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Dynamic Instability Analysis of a Rotating Ship Shaft under a Periodic Axial Force by Discrete Singular Convolution

机译:离散奇异卷积在周期性轴力作用下旋转船轴的动力失稳分析

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Dynamic instability of a rotating ship shaft subjected to a periodic axial force is studied by using discrete singular convolution (DSC) with regularized Shannon’s delta kernel. The excitation frequency is related to the spinning speed and the number of blades on the propeller. Effects of number of blades, constant term in the periodic force, and damping on dynamic instability regions are investigated. The results have shown that the increase of number of blades and damping could improve the dynamic stability of rotating shaft with damping. The increase of constant term in the periodic force leads to dynamic instability regions shifting to lower frequencies, making the shaft more sensitive to periodic force. Those dynamic instability regions obtained by DSC method have been compared with those by Floquet’s method to verify the application of DSC method to dynamic instability analysis of rotating ship shaft.
机译:通过使用具有正则化Shannon三角核的离散奇异卷积(DSC)研究了周期性轴力作用下旋转船轴的动态不稳定性。激发频率与旋转速度和螺旋桨上叶片的数量有关。研究了叶片数量,周期性力中的常数项以及阻尼对动态不稳定区域的影响。结果表明,叶片数量的增加和阻尼的增加可以改善带阻尼的旋转轴的动力稳定性。周期性力中常数项的增加会导致动态不稳定性区域移动到较低的频率,从而使轴对周期性力更加敏感。将通过DSC方法获得的动态不稳定性区域与通过Floquet方法获得的动态不稳定性区域进行比较,以验证DSC方法在旋转船舶竖井动态不稳定性分析中的应用。

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