Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 2; Volume 8, Part 2American Society of Mechanical Engineers, 1989 - Arctic regions |
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Page 194
... in - line force coefficient CF ( 1 ) rms against Kcrms shown in Figure 3 is very similar to corresponding results obtained by Bullock [ 17 ] for the same cylinder but with a rigid mounting . The maximum values of CF ( 1 ) rms reduced ...
... in - line force coefficient CF ( 1 ) rms against Kcrms shown in Figure 3 is very similar to corresponding results obtained by Bullock [ 17 ] for the same cylinder but with a rigid mounting . The maximum values of CF ( 1 ) rms reduced ...
Page 486
... into several regimes depending not only on a parameter Ke , but also on B and three dimensional flows take place in most regimes . If the three dimensional flow occurs around a circular cylinder , naturally the in - line force changes ...
... into several regimes depending not only on a parameter Ke , but also on B and three dimensional flows take place in most regimes . If the three dimensional flow occurs around a circular cylinder , naturally the in - line force changes ...
Page 487
... In Figs . 5 and 6 A , B and C indicate the pressure distributions at the positions where the immersed depth are 0.4m , 0.5m and 0.62m respectively . The values of right corner of each distributions denote the in - line pressures obtained by ...
... In Figs . 5 and 6 A , B and C indicate the pressure distributions at the positions where the immersed depth are 0.4m , 0.5m and 0.62m respectively . The values of right corner of each distributions denote the in - line pressures obtained by ...
Contents
HYDRODYNAMIC FORCES | 1 |
WaveCurrent Force on Horizontal Cylinder | 7 |
Tensions on Silt Curtains in Currents and Waves | 13 |
Copyright | |
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added mass amplitude analysis approximation Arctic Engineering base shear breakwater caisson calculated circular cylinder components computed Conference on Offshore correlation damping deterministic diameter distribution domain drag coefficient drag force drift force dynamic effect experimental factor failure Figure flume force coefficients form drag free surface frequency function Green's function hindcast horizontal hydrodynamic hydrodynamic force ice floe inertia irregular waves lift coefficient lift force linear maximum mean measured Mechanics and Arctic method mode motion nonlinear North Sea obtained Offshore Mechanics Offshore Structures order theory oscillation oscillatory flow parameters pipeline platform potential present pressure problem random range ratio reliability response Reynolds number Sarpkaya second order second-order ship shown in Fig simulation skin friction spectrum submerged surge tension theory transverse force uncertainty variables velocity potential vibration viscous vortex shedding vortices water depth water particle wave force wave height wave loads wave period