Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volumes 1-2American Society of Mechanical Engineers, 1992 - Arctic regions |
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Page 325
... hydrodynamic pressures , hydrodynamic coefficients and wave excitation . In principle the method for solution is based on three- dimensional source distribution over the surface of the hull . The method makes it possible to closely ...
... hydrodynamic pressures , hydrodynamic coefficients and wave excitation . In principle the method for solution is based on three- dimensional source distribution over the surface of the hull . The method makes it possible to closely ...
Page 369
HYDRODYNAMIC LOADS ON A THREE - DIMENSIONAL BODY IN A NARROW TANK J. H. Vazquez and A. N. Williams Department of Civil and Environmental Engineering University of Houston Houston , Texas I Figure 1. Definition Sketch . DIMENSIONLESS ...
HYDRODYNAMIC LOADS ON A THREE - DIMENSIONAL BODY IN A NARROW TANK J. H. Vazquez and A. N. Williams Department of Civil and Environmental Engineering University of Houston Houston , Texas I Figure 1. Definition Sketch . DIMENSIONLESS ...
Page 371
... hydrodynamic force components may be found . The force component in the direction α = x , y , z , is Fa = - ρ Ja So na ds in which p is the fluid density . NUMERICAL RESULTS AND DISCUSSION ( 19 ) Example results are shown for truncated ...
... hydrodynamic force components may be found . The force component in the direction α = x , y , z , is Fa = - ρ Ja So na ds in which p is the fluid density . NUMERICAL RESULTS AND DISCUSSION ( 19 ) Example results are shown for truncated ...
Contents
OCEAN WAVES AND CURRENT | 1 |
HYDRODYNAMIC FORCES | 69 |
17 | 90 |
Copyright | |
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added mass amplitude analysis axial behaviour boundary bubble buoy cable calculated Campos Basin coefficients compliant tower components configuration crane vessels cylinder damping model damping ratio developed direction displacement distribution domain drag coefficient drag force dynamic response effect Engineering equation estimated experimental Figure floating flow fluid heave motion hydrodynamic hydrodynamic damping installation interaction internal wave irregular waves Karunakaran length linear load matrix measured method modal mode model testing module natural frequency natural period nondimensional nonlinear obtained Ocean Offshore Structures operations oscillation parameters peak pipe pipeline platform pontoon potential predicted pressure ratio Rayleigh Rayleigh distribution resonant riser rotation second-order semisubmersible ship shown simulation spectra spectrum stiffness Stirling engine subsea surge tank technique tendon tension tethers transfer function values vector velocity velocity potential vertical vessel vibration water depth wave force wave height wave period