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 43
... developed by Takezawa and Hirayama ( 1976 ) . Clauss and Bergmann ( 1986 ) recommended a special type of transient waves , i.e. Gaussian wave packets , which have the advantage that their propaga- tion behaviour can be predicted very ...
... developed by Takezawa and Hirayama ( 1976 ) . Clauss and Bergmann ( 1986 ) recommended a special type of transient waves , i.e. Gaussian wave packets , which have the advantage that their propaga- tion behaviour can be predicted very ...
Page 283
... developed for solv- ing continuum mechanics problems . Among these techniques , the finite difference method is most early developed . This method uses divided difference expressions established from a local Tay- lor series to replace ...
... developed for solv- ing continuum mechanics problems . Among these techniques , the finite difference method is most early developed . This method uses divided difference expressions established from a local Tay- lor series to replace ...
Page 437
... developed to predict the response of a moored buoy subject to hydrodynamic loadings . External loadings on the buoy include hydrodynamic forces , mooring tension , wind loading and weight . A coupled analysis of the interaction of a ...
... developed to predict the response of a moored buoy subject to hydrodynamic loadings . External loadings on the buoy include hydrodynamic forces , mooring tension , wind loading and weight . A coupled analysis of the interaction of a ...
Contents
PART | 1 |
Sea Surface Wind Stress in Stratified Atmospheric Flow | 49 |
OFFSHORE MECHANICS AND ARCTIC ENGINEERING | 65 |
Copyright | |
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acceleration amplitude analysis axial boundary conditions calculated cavitation cnoidal waves comparison components computed crest heights cylinder damping dent displacement distribution drag drag coefficient effects element equation estimated experimental factor Figure flow fluid force coefficients Fourier freak waves free surface function given Hilbert transform horizontal hull hydrodynamic hydrodynamic forces inertia interaction irregular wave linear wave LRFD maximum measured method monotower motion natural frequency nondimensional nonlinear North Sea obtained Ocean Offshore Structures OMAE oscillating parameters platform potential potential flow predicted pressure Proc reliability Reynolds number seastates second-order shear ship shown simulation skeg solution spectrum Statoil stress surface elevation Table theoretical transfer function transient wave values variable vertical vibration vortex induced vibrations vortex shedding wave elevation wave force wave kinematics wave load wave theory wave train Wheeler stretching wind