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On the instability of spinning cylindrical shells partially filled with liquid

Firouz Abadi, R. D ; Sharif University of Technology

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  1. Type of Document: Article
  2. DOI: 10.1142/S0219455412500186
  3. Abstract:
  4. The dynamics and stability of rotating circular cylindrical shells partially filled with ideal liquid is analyzed. The structural dynamics of the shell is modeled by using the first-order shear deformable shell theory and the flow inside the cylinder is simulated by a quasi 2D model based on the NavierStokes equations for ideal liquid. The fluid and structural models are combined using the nonpenetration condition of the flow on the wetted surface of the cylinder and the fluid pressure on the flexible shell. The obtained fluidstructure model is employed for the determination of the stable regions of the spinning frequency of the cylinder. A series of case studies are performed on the governing parameters of the instability of the cylinder and some conclusions are outlined
  5. Keywords:
  6. Cylinder partially filled with liquid ; Fluidstructure interaction ; Instability ; 2-D model ; Circular cylindrical shells ; Cylindrical shell ; First-order ; Fluid pressures ; Fluid-structure model ; Governing parameters ; Shear deformable shells ; Shell ; Spinning frequency ; Stable region ; Structural models ; Wetted surface ; Cylinders (shapes) ; Model structures ; Plasma stability ; Shells (structures) ; Stability ; Structural dynamics ; Liquids
  7. Source: International Journal of Structural Stability and Dynamics ; Volume 12, Issue 3 , 2012 ; 02194554 (ISSN)
  8. URL: http://www.worldscientific.com/doi/abs/10.1142/S0219455412500186