Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 5American Society of Mechanical Engineers, 2001 - Arctic regions |
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Page 49
... Marine Technology Department , Japan Marine Science and Technology Center ( JAMSTEC ) Tomoki Ikoma Institute of Industrial Science , University of Tokyo 4-6-1 Komaba , Meguro - ku , Tokyo 153-8505 , Japan tomoki@iis.u-tokyo.ac.jp ...
... Marine Technology Department , Japan Marine Science and Technology Center ( JAMSTEC ) Tomoki Ikoma Institute of Industrial Science , University of Tokyo 4-6-1 Komaba , Meguro - ku , Tokyo 153-8505 , Japan tomoki@iis.u-tokyo.ac.jp ...
Page 128
... marine construction projects there are many factors that influence cost and schedule . Major sources of cost and schedule risks include labor , equipment , material , facility availability , third party delays , safety , changes in the ...
... marine construction projects there are many factors that influence cost and schedule . Major sources of cost and schedule risks include labor , equipment , material , facility availability , third party delays , safety , changes in the ...
Page 209
... marine environment in Tokyo Bay . The model consists of physical and chemical - biological submodels , the latter of which is further divided into pelagic and benthic submodels . For direct comparison of numerical results with ...
... marine environment in Tokyo Bay . The model consists of physical and chemical - biological submodels , the latter of which is further divided into pelagic and benthic submodels . For direct comparison of numerical results with ...
Contents
OMAE2001OSU5019 | 93 |
OMAE2001OSU5021 | 101 |
OMAE2001OSU5022 | 111 |
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20th International Conference ABAQUS air chamber amplitude analysis angle Arctic Engineering beam bending breakwater bridge calculated CO₂ coefficient Conference on Offshore connector construction damping deformation developed diffraction distribution drift force dynamic ecosystem model effect elastic response environmental equation experimental FBSP Feb May Aug fence Figure floating breakwater flow freak waves frequency function girder guide vane hindcast HIPAN horizontal hydrodynamic hydroelastic response incident wave irregular waves Japan Large Floating Structures layer linear load maneuvers measured Mechanics and Arctic Mega-Float method Mobile Offshore Base model tests modules moon-pool mooring forces mooring system motion mussels non-linear ocean Offshore Mechanics PETROBRAS phytoplankton predicted RADARSAT-1 reef Rio de Janeiro ship shoreline shown shows significant wave height simulation submerged plate suction Tokyo Bay turbine Uchiumi velocity vertical displacements VLFS water depth wave energy absorbing wave period wave power wind