• Title of article

    Sensitivity Analysis of Vibrating Laminated Composite Rec-tangular Plates in Interaction with Inviscid Fluid Using EFAST Method

  • Author/Authors

    Khorshidi, Korosh Department of Mechanical Engineering - Faculty of Engineering - Arak University, Arak, 38156-88349, Iran , Taheri, Moein Department of Mechanical Engineering - Faculty of Engineering - Arak University, Arak, 38156-88349, Iran , Ghasemi, Mohsen Department of Mechanical Engineering - Faculty of Engineering - Arak University, Arak, 38156-88349, Iran

  • Pages
    13
  • From page
    219
  • To page
    231
  • Abstract
    This work investigates the sensitivity analysis of vibrating laminated composite rectangular plates in interaction with inviscid fluid using the modified higher-order shear deformation plate theory. The EFAST method which is based on variance and is independent of any assumption of linearity and uniformity between inputs and outputs is utilized for sensitivity analysis of laminated composite rectangular plates. Theoretical formulations, both for the laminated rec-tangular plates in interaction with inviscid, incompressible and irrotational fluid and the sensi-tivity analysis technique are summarized here. A Cartesian coordinate system is used to de-scribe governing equations of fluid-structure interaction. Hamilton's variational principle is used to derive the Eigen problem of the complex system. A numerical investigation is carried out by using the Galerkin method and the boundary conditions of the plate are simply support-ed. A set of admissible displacement functions which satisfy identically the geometric bounda-ry conditions are used to calculate the wet natural frequencies of the plate . In the numerical examples, the effect of the aspect ratio, thickness ratio and material orthotropy orientation of the plate, depth ratio and width of the fluid on the fundamental natural frequency of the vibrat-ing laminated composite rectangular plates are examined and discussed.
  • Keywords
    Vibration , Sensitivity analysis , Laminate composite plate , FSI , Inviscid fluid
  • Journal title
    Mechanics of Advanced Composite Structures
  • Serial Year
    2020
  • Record number

    2572224