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Interaction of ocean waves with floating and submerged horizontal flexible structures in three-dimensions
Institution:1. College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China;2. School of Mathematics, Computer Science and Engineering, City University of London, London EC1V 0HB, UK
Abstract:A three-dimensional general mathematical hydroelastic model dealing with the problem of wave interaction with a floating and a submerged flexible structure is developed based on small amplitude wave theory and linear structural response. The horizontal floating and submerged flexible structures are modelled with a thin plate theory. The linearized long wave equations based on shallow water approximations are derived and results are compared. Three-dimensional Green’s functions are derived using fundamental source potentials in water of finite and infinite depths. The expansion formulae associated with orthogonal mode-coupling relations are derived based on the application of Fourier transform in finite and infinite depths in case of finite width in three-dimensions. The usefulness of the expansion formula is demonstrated by analysing a physical problem of surface gravity wave interaction with a moored finite floating elastic plate in the presence of a finite submerged flexible membrane in three-dimensions. The numerical accuracy of the method is demonstrated by computing the complex values of reflected wave amplitudes for different modes of oscillation and mooring stiffness. Further, the effect of compressive force and modes of oscillations on a free oscillation hydroelastic waves in a closed channel of finite width and length for floating and submerged elastic plate system is analysed.
Keywords:Flexible structures  Three-dimensional expansion formulae  Green’s function  Moored stiffness  Orthogonal mode-coupling relation  Reflection and transmission coefficients  Hydroelastic wave
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