Topographical effects on wave scattering by an elastic plate floating on two-layer fluid
DOI10.3846/MMA.2024.17539zbMATH Open1543.76014MaRDI QIDQ6559040
Ramanababu Kaligatla, Nagmani Prasad
Publication date: 21 June 2024
Published in: Mathematical Modelling and Analysis (Search for Journal in Brave)
variational principleeigenfunction expansion methodvariable bottom topographypotential flow theoryplate deflectionmild-slope approximationsmall-amplitude wave
Fluid-solid interactions (including aero- and hydro-elasticity, porosity, etc.) (74F10) Water waves, gravity waves; dispersion and scattering, nonlinear interaction (76B15) Internal waves for incompressible inviscid fluids (76B55)
Cites Work
- A boundary element method for the hydrodynamic analysis of floating bodies in variable bathymetry regions
- Wave scattering by a horizontal circular cylinder in a two-layer fluid with an ice-cover
- Wave scattering by a thin elastic plate floating on a two-layer fluid
- Effect of bottom undulation for mitigating wave-induced forces on a floating bridge
- Oblique flexural gravity-wave scattering due to changes in bottom topography
- Hydroelastic interaction between water waves and thin elastic plate floating on three-layer fluid
- A multi-mode approximation to wave scattering by ice sheets of varying thickness
- Water wave scattering by a step of arbitrary profile
- Wave scattering in a two-layer fluid of varying depth
- SURFACE WAVE SCATTERING BY AN ELASTIC PLATE SUBMERGED IN WATER WITH UNEVEN BOTTOM
- Propagation of oblique waves over small bottom undulation in an ice-covered two-layer fluid
- Oblique flexural-gravity wave scattering by a submerged semi-circular ridge
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