Free vibration characteristics of cylindrical shells partially buried in elastic foundations
β Scribed by Haryadi Gunawan Tj; Takashi Mikami; Shunji Kanie; Motohiro Sato
- Publisher
- Elsevier Science
- Year
- 2006
- Tongue
- English
- Weight
- 257 KB
- Volume
- 290
- Category
- Article
- ISSN
- 0022-460X
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β¦ Synopsis
Free vibrations of cylindrical shells partially buried in elastic foundations based on the finite element method were examined. The shells are discretized into cylindrical finite elements and the distribution of the foundation in the circumferential direction is defined by the expansion of Fourier series. The present formulation can be simply applied to consider non-uniformities in the foundation both in the circumferential and longitudinal directions. Convergence issues with the present method are explained. Numerical results of the natural frequency and mode for various shell geometries and foundation parameters are given to provide a clearer picture of the shell characteristics in linear vibrations. The relative stiffness ratio of foundation and shell is discussed. The results of free vibration analysis for partially suspended shells on elastic foundations are also presented.
π SIMILAR VOLUMES
The exact solution to the free vibration problem of circular cylindrical shells half-filled with liquid and with the shell axis orthogonal to the gravitational field is analytically obtained and approximate models are proposed to estimate natural frequencies and mode shapes of partially filled shell
Natural frequencies of stiffened cylindrical shells are investigated for short and long shells with clamped-clamped boundary condition. The semi-analytical finite element methods is used for the analysis. A cylindrical shell element with four degrees of freedom per node and two nodes per element is