Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volumes 1-2American Society of Mechanical Engineers, 1991 - Arctic regions |
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Page 68
... cell center of rolation EVALUATION OF THE INTEGRATION OVER THE INNER FINITE REGION The integration over the inner finite region is indicated as : 0.208 15 ° X SEM 0.06 intpp i som F , ? ! ( SEM ) = 2iwp f = ziwp | Isruqunds Israw ws ...
... cell center of rolation EVALUATION OF THE INTEGRATION OVER THE INNER FINITE REGION The integration over the inner finite region is indicated as : 0.208 15 ° X SEM 0.06 intpp i som F , ? ! ( SEM ) = 2iwp f = ziwp | Isruqunds Israw ws ...
Page 627
In the figure , the water content w . void ratio e and shear strength Cu indicated by points were experimental data on the undisturbed samples obtained using a piston corer . The effective over burdened pressure p shown by points were ...
In the figure , the water content w . void ratio e and shear strength Cu indicated by points were experimental data on the undisturbed samples obtained using a piston corer . The effective over burdened pressure p shown by points were ...
Page 94
The results of a best fit of the cubic polynomial up to different heeling angles indicated that in the range of interest the values az = 4.0 and аз -0.5 could be representative of different situations . The first is quite common in ...
The results of a best fit of the cubic polynomial up to different heeling angles indicated that in the range of interest the values az = 4.0 and аз -0.5 could be representative of different situations . The first is quite common in ...
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Contents
SPECIAL SESSION HYDRODYNAMICS | 1 |
HYDRODYNAMIC FORCES | 29 |
Simulated High Reynolds Number Flow and Forces on Cylinder Groups | 71 |
Copyright | |
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acting amplitude analysis angle applied approach approximately assumed average body boundary cable calculated circular cylinder coefficients compared comparison components computed considered constant corresponding cylinder damping depth described determined diffraction direction distribution domain drag drift force effect element Engineering equation estimates experimental experiments expressed field Figure floating flow fluid follows free surface frequency function given height horizontal hydrodynamic included increase integral irregular waves length lift force linear loads mass maximum mean measured method mode mooring motion natural nonlinear obtained Ocean Offshore oscillation period phase platform points position potential predicted present pressure problem random range regular relative represents respectively response second order second-order separation ship shown shows simulation solution spectrum structure surge Table tests theory values velocity vertical vortex wave forces