Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volumes 1-2American Society of Mechanical Engineers, 1990 - Arctic regions |
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Page 145
DAMPING COEFFICIENT OF A MOORED SEMISUBMERSIBLE IN WAVES AND CURRENT S. K. Chakrabarti and D. C. Cotter Chicago Bridge & Iron Technical Services Company Marine Research Department Plainfield , Illinois ve ** PROPERTIES OF TANKER MODEL ...
DAMPING COEFFICIENT OF A MOORED SEMISUBMERSIBLE IN WAVES AND CURRENT S. K. Chakrabarti and D. C. Cotter Chicago Bridge & Iron Technical Services Company Marine Research Department Plainfield , Illinois ve ** PROPERTIES OF TANKER MODEL ...
Page 146
( 1986 ) investigated the slow drift damping of a moored tanker in head seas . The free decay tests in still water and in waves were analyzed using a nonlinear second - order equation of motion . The nonlinearity appeared as a damping ...
( 1986 ) investigated the slow drift damping of a moored tanker in head seas . The free decay tests in still water and in waves were analyzed using a nonlinear second - order equation of motion . The nonlinearity appeared as a damping ...
Page 496
Strain data see sensor where ε is the damping coefficient . Depending on a , this description represent various types of damping : a = 1 represents the linear damping model and co2 leads to a quadratic damping model .
Strain data see sensor where ε is the damping coefficient . Depending on a , this description represent various types of damping : a = 1 represents the linear damping model and co2 leads to a quadratic damping model .
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Contents
DESIGN METHODS OF STRUCTURES | 10 |
OCEAN WAVES | 11 |
Simulation of Hurricane Seas in a Multidirectional Wave Basin | 17 |
Copyright | |
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added amplitude analysis applied array bending body boundary calculated coefficient compared comparison component considered corresponding crest curve cylinder damping defined dependent depth determined developed direction displacement distribution drag dynamic effect element Engineering equation estimated experimental experiments factor field Figure flow forward frequency function given hydrodynamic increase integral interval length lift force linear load mass maximum mean measured method mooring motion natural nonlinear obtained Offshore oscillation parameters period pile plate platform potential predicted present pressure problem range ratio relative respectively response riser ship shown simulation solution spectra spectrum speed stress structure surface surge Table tension theory values velocity vertical vessel vortex wave force wave height wind