Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 16, Part 1American Society of Mechanical Engineers, 1997 - Arctic regions |
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Page 1
VORTEX FLOW AROUND A SQUARE CYLINDER MOVING ALONG A CIRCULAR ORBIT Koji Otsuka , Yuji Anada and Yoshiho Ikeda Department of Marine System Engineering , Osaka Prefecture University 1-1 , Gakuen - cho , Sakai , Osaka 593 , JAPAN 1 WAVE ...
VORTEX FLOW AROUND A SQUARE CYLINDER MOVING ALONG A CIRCULAR ORBIT Koji Otsuka , Yuji Anada and Yoshiho Ikeda Department of Marine System Engineering , Osaka Prefecture University 1-1 , Gakuen - cho , Sakai , Osaka 593 , JAPAN 1 WAVE ...
Page 2
... flow field around a circular cylinder moving along a circular orbit when the motion is impulsively started from rest , and showed that the vortex shedding pattern is almost the same as that in the starting vortex model proposed by ...
... flow field around a circular cylinder moving along a circular orbit when the motion is impulsively started from rest , and showed that the vortex shedding pattern is almost the same as that in the starting vortex model proposed by ...
Page 60
... flow . However . a return flow of about 2 cm / s ( on average ) is experienced in the present case . Adding this value to the measured value , 1.3 cm / s ( to a first approximation ) , a steady streaming velocity of U- = 1.3 + 2 = 3.3 ...
... flow . However . a return flow of about 2 cm / s ( on average ) is experienced in the present case . Adding this value to the measured value , 1.3 cm / s ( to a first approximation ) , a steady streaming velocity of U- = 1.3 + 2 = 3.3 ...
Contents
HYDRODYNAMIC FORCES | 1 |
The Irregular Breaking Wave Forces on Vertical Wall | 13 |
Steady Drift Forces and Yaw Moment Due to Waves With Slow Current | 47 |
Copyright | |
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added mass amplitude analysis anchor angle axial stress breakwater cable caisson calculated catenary components computed configuration cylinder damping diameter diffraction displacement domain drag coefficient dynamic effect element Engineering equation evaluation excitation experimental experiments Fieldbus Figure flow fluid FPSO free surface function Green function guidewire heave horizontal hull hydrodynamic incident wave installation integral interaction irregular waves Japan length linear load matrix maximum measured method mode mooring line mooring system motion nonlinear numerical obtained Ocean Offshore Technology ASME oscillation parameters PETROBRAS piles pipe string pitch moment platform predicted present ratio response riser ship shown in Fig simulation sloshing pressure solution speed stress surge tank Technology ASME 1997 tension Tension Leg Platform theory third order tsunami vector velocity potential vertical vessel vortex shedding water depth wave force wave height wave period wave power