首页> 外文期刊>Journal of Vibration and Acoustics >Mode Count and Modal Density of Isotropic Circular Cylindrical Shells Using a Modified Wavenumber Space Integration Method
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Mode Count and Modal Density of Isotropic Circular Cylindrical Shells Using a Modified Wavenumber Space Integration Method

机译:各向同性圆柱壳的模式计数和模态密度的改进波数空间积分方法

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摘要

A new method based on the wavenumber space integration algorithm is proposed in order to obtain mode count and modal density of circular cylindrical shells. Instead of the simplified equation of motion, the exact equation is applied in mode count calculations. Modal plots are changed significantly in the k-space when using the exact equation. Mode repetition in cylindrical shells is represented by additional mode count curves in the k-space. On the other hand, a novel technique is presented in order to implement boundary condition effects in mode count and modal density calculations. Integrating these two significant corrections, a modified wavenumber space integration (MWSI) method is developed. Mode count and modal densities of three shells with different geometrical and acoustical properties are obtained using the MWSI method and conventional WSI. Results are verified using the exact mode count calculations. Moreover, effects of geometrical properties are studied on mode count plots in the k-space. Modal densities are obtained for cylindrical shells of different lengths, radii, and thicknesses. Finally, modal densities of cylindrical shells are compared to flat plates of the same size and boundary condition. Interesting results are obtained which will contribute in calculation of acoustic radiation efficiency and sound transmission in cylindrical shells.
机译:为了获得圆柱壳的模态计数和模态密度,提出了一种基于波数空间积分算法的新方法。代替简化的运动方程,在模式计数计算中应用精确方程。使用精确方程式时,模态图在k空间中会发生显着变化。圆柱壳中的模式重复由k空间中的其他模式计数曲线表示。另一方面,提出了一种新颖的技术,以便在模式计数和模式密度计算中实现边界条件效应。综合这两个重要的修正,开发了一种改进的波数空间积分(MWSI)方法。使用MWSI方法和常规WSI获得了具有不同几何和声学特性的三个壳体的模数和模态密度。使用精确的模式计数计算来验证结果。此外,还研究了几何特性对k空间中模式计数图的影响。对于不同长度,半径和厚度的圆柱壳,可以获得模态密度。最后,将圆柱壳的模态密度与相同尺寸和边界条件的平板进行比较。获得了有趣的结果,这些结果将有助于计算圆柱壳中的声辐射效率和声音传输。

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