Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volumes 1-2American Society of Mechanical Engineers, 1993 - Arctic regions |
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Page 205
... drag dependent contribution ( which in turn is considered to be made up of two components related to ' low ' and ' high ' levels of structure response ) and the level of radiation damping . This simple formulation for the drag ...
... drag dependent contribution ( which in turn is considered to be made up of two components related to ' low ' and ' high ' levels of structure response ) and the level of radiation damping . This simple formulation for the drag ...
Page 332
... Drag forces The drag forces arise from the separation of the flow around the member . They are expressed for a cylindrical member of diame- ter D by : = T T dl T ( 8 ) where Cp is the drag coefficient and Vr the absolute value ...
... Drag forces The drag forces arise from the separation of the flow around the member . They are expressed for a cylindrical member of diame- ter D by : = T T dl T ( 8 ) where Cp is the drag coefficient and Vr the absolute value ...
Page 476
... drag . The magnitude and trend of the friction drag force experienced by the oscillating cylinder can be estimated approximately . Velocity profiles in the laminar boundary layers of oscillating infinite flat plates are well known in ...
... drag . The magnitude and trend of the friction drag force experienced by the oscillating cylinder can be estimated approximately . Velocity profiles in the laminar boundary layers of oscillating infinite flat plates are well known in ...
Contents
OCEAN WAVES AND ENERGY | 1 |
OFFSHORE MECHANICS AND ARCTIC ENGINEERING | 13 |
The Effect of NonColinear Wave Wind and Current Loading on Dynamic Response of a Tension | 17 |
Copyright | |
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acceleration added mass amplitude analysis angle boundary condition calculated cavitation circular cylinder Comparison compliant compliant tower components computed cosh cyclic diffraction direction displacement domain drag coefficient drag force drift force dynamic effects Engineering equation experimental Figure finite element floating body fluid forward speed free surface function Green's function heave horizontal hydrodynamic incident wave interaction irregular waves joint kinematics lift force linear matrix measured method mode mooring line Morison motion nonlinear obtained Ocean Ocean Engineering offshore structures Offshore Technology ASME OMAE oscillating parameters peak pile platform pontoons predicted propagation random waves ratio Rayleigh distribution response second-order ship SHIPMO shown in Fig simulation solution spectral spectrum storm surge tanker Technology ASME 1993 tension leg platform tests theory values velocity potential vortex vortex shedding water depth wave forces wave height wave loading wavemaker wavenumber wind