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 82
... approximately 0.47 . Removing the cylinder , or separating the disk and cylinder so as to eliminate hydrodynamic interaction , more than doubles the added mass . The isolated disk has a coefficient of approximately 1.10m ' . Both the ...
... approximately 0.47 . Removing the cylinder , or separating the disk and cylinder so as to eliminate hydrodynamic interaction , more than doubles the added mass . The isolated disk has a coefficient of approximately 1.10m ' . Both the ...
Page 83
... approximately 5.0 ( Fig . ( 8 ) of Prislin et al . , 1998 ) and 9.0 ( Fig . ( 9 ) of Dalzell , 1978 ) . From Fig . ( 6 ) , the circular disk has a drag coefficient of approximately 10.0 . The reason for the low drag coefficient of ...
... approximately 5.0 ( Fig . ( 8 ) of Prislin et al . , 1998 ) and 9.0 ( Fig . ( 9 ) of Dalzell , 1978 ) . From Fig . ( 6 ) , the circular disk has a drag coefficient of approximately 10.0 . The reason for the low drag coefficient of ...
Page 277
... approximately 2 , as are the vertical forces . The transverse forces are essentially unchanged . CONCLUSIONS Based on the current study , the following conclusions can be drawn . It should be noted that they are based on the module ...
... approximately 2 , as are the vertical forces . The transverse forces are essentially unchanged . CONCLUSIONS Based on the current study , the following conclusions can be drawn . It should be noted that they are based on the module ...
Contents
HYDRODYNAMIC FORCES | 1 |
OMAE99OFT4071 | 9 |
OMAE99OFT4072 | 19 |
Copyright | |
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added mass amplitude analysis applied ASME axial bending boundary conditions buoy buoyancy cable calculated Campos Basin catenary components computed Conference on Offshore configuration connector Copyright cylinder damping diameter direction discrete disk displacement distribution domain drag coefficient droplets dynamic effect equation experimental Fall angle fatigue floating flow fluid force coefficient FPSO free surface free surface effects function height horizontal hydrodynamic in-line length lift force linear load Marine maximum Mechanics and Arctic method model tests module mooring line mooring system node nonlinear obtained Offshore Mechanics oscillation parameters PETROBRAS pile platform plow polyester prediction pressure reefs relative motion response Reynolds number riser ship simulation solution spectrum spheres spray cloud spray density static stiffness surge syntactic foam Table tension tether transfer function turret umbilical cable values velocity velocity potential vertical vessel water depth wave drift wave forces wave frequency wave heading