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New approach to investigation of resonant vibrations of noncircular shells based on the theory of coupled waveguides

机译:基于耦合波导理论的非圆壳共振振动研究新方法

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摘要

In the present paper a new simple method of analytical description of resonant vibrations of finite noncircular cylindrical shells is developed. The method is based on the theory of coupled waveguides formed by quasiflat areas of the same noncircular shells having an infinite length (depth). The physical reason for guided wave propagation along quasiflat areas of such shells is the difference between flexural wave velocities in their quasiflat and curved areas, respectively. Using asymptotic expressions for flexural wave velocities in circular shells with different radii of curvature, approximate dispersion equations are derived for waves propagating in such waveguides and their corresponding coupling coefficients. After that, considering shells of finite length, the transition is made from the coupled guided modes to the coupled resonant vibrations of the shell. The obtained resonant frequencies and spatial distributions of the resulting vibration modes are in good agreement with the results of finite element calculations.
机译:在本文中,开发了一种新的简单分析方法来描述有限的非圆形圆柱壳的共振。该方法基于由具有无限长度(深度)的相同非圆形壳的准平坦区域形成的耦合波导的理论。导波沿着此类壳的准平坦区域传播的物理原因是弯曲波速度分别在其准平坦区域和弯曲区域之间存在差异。使用具有不同曲率半径的圆形壳中的弯曲波速度的渐近表达式,导出在此类波导中传播的波及其相应的耦合系数的近似色散方程。此后,考虑到有限长度的壳体,从耦合的引导模式过渡到壳体的耦合共振振动。所获得的共振频率和所得振动模式的空间分布与有限元计算的结果非常吻合。

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