Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 18, Part 6American Society of Mechanical Engineers, 1999 - Arctic regions |
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Page 77
... buoyant body to make it keep floating in the sea and the buoyant body is moored to anchors on the seabed . The mooring tension keeps the buoyant body and the U - Pipe Bundle stable on the seabed . The buoyant body size can be calculated ...
... buoyant body to make it keep floating in the sea and the buoyant body is moored to anchors on the seabed . The mooring tension keeps the buoyant body and the U - Pipe Bundle stable on the seabed . The buoyant body size can be calculated ...
Page 78
... buoyant body . ( 3 ) The buoyant body , the U - Pipe Bundle and drain pipelines are connected together on the ocean utilizing winch barges , crane barges and tug boats . The U - Pipe Bundle has to be kept dry during this connection work ...
... buoyant body . ( 3 ) The buoyant body , the U - Pipe Bundle and drain pipelines are connected together on the ocean utilizing winch barges , crane barges and tug boats . The U - Pipe Bundle has to be kept dry during this connection work ...
Page 81
... Buoyant Body 4000 = 12m 3000 2000 1000 40 = 15m Horizontal Force Vertical Force 50 60 70 Buoyant Body Mooring Depth ( m ) Figure 4 Wave Induced Force for the Buoyant Body ( D ) : Power Plant : Compressor Station C : Onshore Pipeline D ...
... Buoyant Body 4000 = 12m 3000 2000 1000 40 = 15m Horizontal Force Vertical Force 50 60 70 Buoyant Body Mooring Depth ( m ) Figure 4 Wave Induced Force for the Buoyant Body ( D ) : Power Plant : Compressor Station C : Onshore Pipeline D ...
Contents
VERY LARGE FLOATING STRUCTURE | 1 |
OMAE99OSU3057 | 9 |
OMAE99OSU3058 | 17 |
Copyright | |
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Common terms and phrases
1st-order 2nd-order acoustic amplitude anchor angle Arctic Engineering ASME buoy buoyant body cable element cage bottom calculated central spar cage component compression chamber Copyright deflection diameter distribution Drain Pipeline dynamic equation estimate Figure fish cage flow coefficient fluid function Gauge Number gravity-type grid heave horizontal hydrodynamic hydrodynamic pressure hydroelastic response incident wave irregular waves Japan large floating structures length lift force linear loading located mean wave measured Mechanics and Arctic MEGA-FLOAT meters method modal coordinate mode shape mooring force mooring lines mooring system navigation obtained Ocean Engineering Offshore Mechanics pump Qmax radar RAO(Heave/Wave amp resonant duct response amplitude operators robot semisubmersible sensor shoreline shown in Fig significant wave height simulation spectra spectrum surface Tension Leg tether Theseus towed transponder U-Pipe Bundle unit deck vector vehicle velocity vertical displacement VLFS WaMOS wave conditions wave period wave power wind