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- W2991566168 abstract "Optimal design of an immersed elastic body interacting in a viscous fluid medium is interested in many aspects of engineering and industry. In this research, fluid structure-interaction (FSI) analysis is used to recognize the importance of the flow and solid geometrical parameters on the vortex-induced vibration of a rigid cylinder and attached beam parallel to flow direction. The optimal design of the attached beam to suppress the vortex behind a circular cylinder has been numerically investigated. The finite element method (FEM) is used to produce 2D models of a beam attached to the cylinder to modeling the vortex induction to predict the optimal geometry for the beam and velocity regions. Turek and Hron's benchmark is utilized to confirm the FSI models, where a good agreement was shown. Numerical modeling of FSI of the circular cylinder is devoted to computing the vertical forces applied to it along with finding the critical values of parameters. Vorticity in fluid and stresses in the structure field for various beam length and velocity magnitude are examined and simulated." @default.
- W2991566168 created "2019-12-05" @default.
- W2991566168 creator A5059312200 @default.
- W2991566168 date "2020-01-01" @default.
- W2991566168 modified "2023-09-26" @default.
- W2991566168 title "Optimal design of vibrating beam behind a cylinder" @default.
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- W2991566168 doi "https://doi.org/10.1016/j.oceaneng.2019.106759" @default.
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