Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 2; Volume 7, Part 2American Society of Mechanical Engineers, 1988 - Arctic regions |
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Page 80
... parameters . In comparison to the traditional design methods the following improvements have been obtained : 1 ) 2 ) 3 ) 4 ) The joint probability of the relevant environ- mental parameters is taken into account in the the load ...
... parameters . In comparison to the traditional design methods the following improvements have been obtained : 1 ) 2 ) 3 ) 4 ) The joint probability of the relevant environ- mental parameters is taken into account in the the load ...
Page 197
... parameters changes due to in- fluence of opposing currents were studied in detail and a full process forecast model of wave parameters in opposing currents was est- ablished in this paper . The 3th Stokes wave theory combined with wave ...
... parameters changes due to in- fluence of opposing currents were studied in detail and a full process forecast model of wave parameters in opposing currents was est- ablished in this paper . The 3th Stokes wave theory combined with wave ...
Page 366
... parameters Ɛ and the receptance can expand in the order of Ɛ and ) = H ( i ) ( @ ) + Ɛ Hl ( i ) ( w ) + S H2 ( i ) ( w ) + E G H3 ( i ) ( w ) H ( i ) ( @ ) = 1 + H3 * ( W ) TSQQ ( W ) H ( W ) ( 22 ) 4 joined , ε2 5 ° Sqq ( w ) = H * ( w ) ...
... parameters Ɛ and the receptance can expand in the order of Ɛ and ) = H ( i ) ( @ ) + Ɛ Hl ( i ) ( w ) + S H2 ( i ) ( w ) + E G H3 ( i ) ( w ) H ( i ) ( @ ) = 1 + H3 * ( W ) TSQQ ( W ) H ( W ) ( 22 ) 4 joined , ε2 5 ° Sqq ( w ) = H * ( w ) ...
Contents
Catchment Regions of Multiple Dynamic Responses in Nonlinear Problems of Offshore Mechanics | 15 |
OFFSHORE TECHNOLOGY GEOTECHNICAL ENGINEERING | 21 |
Hydrodynamic Forces on a Floating Cylinder in Waves of Finite Depth | 23 |
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added mass amplitude analysis approximately biofouling body boundary breaker breaking waves calculated circular cylinder component computed cylinder damping coefficient diameter diffraction domain drag coefficient drag force dynamic effects exciting force experimental Figure fluid force coefficients forces acting free surface function Green function harmonic Hermite polynomial hindcast hydrodynamic hydrodynamic forces ice mass in-line incident wave inertia integral interaction irregular Kc number linear wave theory load lowerhull maximum measured Mechanics and Arctic method nondimensional nonlinear obtained Ocean Offshore Mechanics offshore structures oscillation parameters platform predicted present ratio Rayleigh distribution regular waves response Reynolds number second order second-order semi-submersible platform semisubmersible shear flow shown simulation solution spectra spectral density spectrum superposition principle surface elevation surge motion tests values velocity potential vibrations vortex shedding w₁ water depth wave drift damping wave drift force wave forces wave frequency wave height wave period