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 14
... body " ( Submitted for publication ) . Lee , C.-H. 1988 " Numerical methods for the solution of three- dimensional integral equations in wave - body interactions ” Ph.D. Thesis , Dept. of Ocean Engineering , MIT . Lee , C.-H. and ...
... body " ( Submitted for publication ) . Lee , C.-H. 1988 " Numerical methods for the solution of three- dimensional integral equations in wave - body interactions ” Ph.D. Thesis , Dept. of Ocean Engineering , MIT . Lee , C.-H. and ...
Page 117
... body and mean waterline unit vector in the k - th direction acceleration of gravity water depth g h wave number for frequency w Wi kmn 12 mass of body normal vector directed outwardly from body refer- enced to body axes normal vector ...
... body and mean waterline unit vector in the k - th direction acceleration of gravity water depth g h wave number for frequency w Wi kmn 12 mass of body normal vector directed outwardly from body refer- enced to body axes normal vector ...
Page 309
... body in two directional regular waves with some frequency difference of component waves were clarified experimentally . In this paper , the aims are to study the effects of wave direction for the first order and second order low ...
... body in two directional regular waves with some frequency difference of component waves were clarified experimentally . In this paper , the aims are to study the effects of wave direction for the first order and second order low ...
Contents
HYDRODYNAMIC FORCESI | 1 |
Catchment Regions of Multiple Dynamic Responses in Nonlinear Problems of Offshore Mechanics | 15 |
OFFSHORE TECHNOLOGY GEOTECHNICAL ENGINEERING | 21 |
Copyright | |
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acting amplitude analysis angle applied approximately assumed body boundary breaker breaking calculated coefficient compared comparison component computed considered corresponding cylinder damping density depend depth determined diameter direction distribution drag drift force dynamic effects elevation energy Engineering equation estimated excitation experimental experiments expressed field Figure flow fluid free surface frequency function given horizontal hydrodynamic incident increase integral irregular length linear load mass maximum mean measured Mechanics method motion obtained Ocean Offshore oscillation parameters period phase potential predicted present pressure probability problem range ratio region regular waves relative Research respectively response second order shear ship shown shows simulation solution spectra spectrum structure surface Table theory values velocity vertical vortex wave drift wave forces wave height wind