Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 11, Part 1American Society of Mechanical Engineers, 1992 - Arctic regions |
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Page 325
... surface geometry and show the effect of the refinement in surface grid to yield a correspondingly improved accuracy of the calculated results . Starting initially with a relatively coarse grid , successive grid refinements are effected ...
... surface geometry and show the effect of the refinement in surface grid to yield a correspondingly improved accuracy of the calculated results . Starting initially with a relatively coarse grid , successive grid refinements are effected ...
Page 354
... surface by n ( x ) = y . At any point on the free surface , the flow velocity normal to the free surface must be zero so : Φ = ( - 1 ) + Φυ = 0 . ( 2 ) III . NUMERICAL METHOD The Rankine source method for solving the free surface prob ...
... surface by n ( x ) = y . At any point on the free surface , the flow velocity normal to the free surface must be zero so : Φ = ( - 1 ) + Φυ = 0 . ( 2 ) III . NUMERICAL METHOD The Rankine source method for solving the free surface prob ...
Page 536
... surface elevation . The spectrum of the water surface elevation will be referred to in this paper as the primary spectrum , while the spectrum of SIWEH is denoted as the spectrum of the wave groups . The SIWEH function and GF have been ...
... surface elevation . The spectrum of the water surface elevation will be referred to in this paper as the primary spectrum , while the spectrum of SIWEH is denoted as the spectrum of the wave groups . The SIWEH function and GF have been ...
Contents
OCEAN WAVES AND CURRENT | 1 |
Directional Wave Observations During High Sea States From an NDBC Discus Buoy | 25 |
Vortex Trajectories Around a Circular Cylinder in Oscillatory Plus Mean Flows | 69 |
Copyright | |
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added mass added resistance analysis body buoy cable calculated catenary components computed configuration convective cylinder damping ratio density displacement distribution domain drag coefficient drag force drift forces dynamic response effect energy Engineering estimated experimental extreme Figure floating flow fluid force coefficients free surface function Green's function heave motion horizontal hydrodynamic hydrodynamic damping incident wave inertia integral internal wave irregular waves KC number lift force linear load low-frequency damping matrix maximum measured method mode mooring Morison equation nondimensional nonlinear obtained Ocean Ocean Engineering Offshore Technology oscillation parameters peak phase velocity platform pontoon potential prediction Rayleigh Rayleigh distribution region resonant rotation second-order ship shown simulation solitary wave spectra spectrum submerged surge tension tethers values vector velocity velocity potential vertical vibration vortex water depth wave crest wave forces wave frequency wave height wave period Wavenumber wind