Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 18, Part 1American Society of Mechanical Engineers, 1999 - Arctic regions |
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Page 1
... prediction for floating structures at the preliminary stage of their designing . Key Words : Numerical Wave Tank ( NWT ) , Hydrodynamic Load Prediction , Fluid - Structure Interaction , Coupling of Interacting Fluid and Structure ...
... prediction for floating structures at the preliminary stage of their designing . Key Words : Numerical Wave Tank ( NWT ) , Hydrodynamic Load Prediction , Fluid - Structure Interaction , Coupling of Interacting Fluid and Structure ...
Page 223
... prediction of the non - linear relative wave motions along the hull is presented . This is necessary to predict the possible freeboard exceedances . Finally a new estimation method for the prediction of the green water loads on slender ...
... prediction of the non - linear relative wave motions along the hull is presented . This is necessary to predict the possible freeboard exceedances . Finally a new estimation method for the prediction of the green water loads on slender ...
Page 328
motion predictions for a moored vessel due wave , current and wind loading . Different from other investigations in this area which have focused on the motion characteristics of FPSO systems , this study focuses the prediction of hull ...
motion predictions for a moored vessel due wave , current and wind loading . Different from other investigations in this area which have focused on the motion characteristics of FPSO systems , this study focuses the prediction of hull ...
Contents
HYDRODYNAMIC FORCES | 1 |
OMAE99OFT4071 | 9 |
OMAE99OFT4072 | 19 |
Copyright | |
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amplitude analysis angle applied approach approximately ASME assumed axial boundary buoy buoyancy cable calculated coefficient compared comparison components computed Conference configuration connector considered Copyright cylinder damping defined depending determine developed diameter direction discrete displacement distribution domain drag dynamic effect element Engineering equation experimental experiments expressed falling fatigue Figure floating flow fluid force FPSO frequency function geometry given height horizontal hydrodynamic increase initial International length lift force linear load Marine mass maximum mean measured Mechanics method mode module mooring line motion nonlinear obtained Offshore operation parameters performed period platform position prediction presented pressure problem range relative respectively response riser rope ship shown shows side simulation solution spheres spray stiffness stress structure surface Table tension tests transverse values velocity vertical vessel water depth wave