Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 15American Society of Mechanical Engineers, 1996 - Arctic regions |
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Page 124
... oscillating water column wave energy device we ex- pect the internal free surface of the device to be subjected to an oscillating pressure having the same period , w , as the in- cident wave . In a rather complicated paper by Evans ...
... oscillating water column wave energy device we ex- pect the internal free surface of the device to be subjected to an oscillating pressure having the same period , w , as the in- cident wave . In a rather complicated paper by Evans ...
Page 132
... oscillating water column device . Proc . 2nd . European Wave Power Conf . , Lisbon , Portugal . Falnes , J. & McIver , P. 1985 Surface wave interactions with systems of oscillating bodies and pressure distributions . Appl . Ocean Res ...
... oscillating water column device . Proc . 2nd . European Wave Power Conf . , Lisbon , Portugal . Falnes , J. & McIver , P. 1985 Surface wave interactions with systems of oscillating bodies and pressure distributions . Appl . Ocean Res ...
Page 144
... oscillating water column . A basic framework for investigating the optimal control problem is provided by the calculus of variations and Pontryagin's Maximum Principle . Qualitative properties of the optimal strategy are derived from ...
... oscillating water column . A basic framework for investigating the optimal control problem is provided by the calculus of variations and Pontryagin's Maximum Principle . Qualitative properties of the optimal strategy are derived from ...
Contents
OFFSHORE MECHANICS AND ARCTIC ENGINEERING | 1 |
Structural Mechanics | 31 |
VOLUME IB OFFSHORE TECHNOLOGY | 41 |
Copyright | |
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added mass amplitude analysis angle boundary breakwater buoy calculated coefficient components computed cylinder damping damping ratio deck device displacement drag coefficient drag force drift forces dynamic effect environmental equations factor Figueira da Foz floating breakwater floating structure flow fluid free surface function hawser heave horizontal hydrodynamic incident wave increase inertia length linear maximum method mooring line mooring system natural frequency nonlinear North Sea obtained offshore structures OMAE operations optimal oscillating parameters peak platform predicted pressure pump random waves resonant response Reynolds number riser sensor ship shown in Figure simulation solution spectral spectral density stability surface elevation surge Table tanker tension theory TPM system transmission coefficient turbine values velocity velocity potential verification vertical vessel water depth wave drift wave energy wave forces wave frequency wave height wave loading wave period wave power wind wire rope