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 159
... dependent on Reynolds number . The Reynolds Number Effect Related to Profile Thickness As mentioned above the viscous forces on an aerofoil is pressure gradient dependent but the pressure gradients on the surfaces of an aerofoil is a ...
... dependent on Reynolds number . The Reynolds Number Effect Related to Profile Thickness As mentioned above the viscous forces on an aerofoil is pressure gradient dependent but the pressure gradients on the surfaces of an aerofoil is a ...
Page 252
... dependent on frequency of this motion in general . This dependence can be accounted for straightforwardly , by applying random vibration analysis in frequency domain , with necessary data being available . Here , however , we assume ...
... dependent on frequency of this motion in general . This dependence can be accounted for straightforwardly , by applying random vibration analysis in frequency domain , with necessary data being available . Here , however , we assume ...
Page 391
... dependent component of the tension . This procedure is applicable also to constant tension cases , and is explained in some detail . The example problems included in the paper are designed to illustrate the additional response harmonics ...
... dependent component of the tension . This procedure is applicable also to constant tension cases , and is explained in some detail . The example problems included in the paper are designed to illustrate the additional response harmonics ...
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