Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 1, Parts 1-2American Society of Mechanical Engineers, 2004 - Arctic regions |
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Page 784
[ 4 ] and [ 5 ] ) , iceberg interactions the hypothesis that the events ( i . e . iceberg
impacts ) follow a with semi - submersible rigs ( e . g . [ 6 ] and [ 7 ] ) , and iceberg
motions Poisson pulse process with a given mean rate of annual near a large ...
[ 4 ] and [ 5 ] ) , iceberg interactions the hypothesis that the events ( i . e . iceberg
impacts ) follow a with semi - submersible rigs ( e . g . [ 6 ] and [ 7 ] ) , and iceberg
motions Poisson pulse process with a given mean rate of annual near a large ...
Page 913
With total load we mean the wave deck impact load plus the simultaneous wave
load on the sub - structure . The calculation of the wave load on the sub -
structure given the wave profile can be done by reasonable accuracy using
existing ...
With total load we mean the wave deck impact load plus the simultaneous wave
load on the sub - structure . The calculation of the wave load on the sub -
structure given the wave profile can be done by reasonable accuracy using
existing ...
Page 931
Keywords : Wave Impact , Submergence , Heavy Lift Vessel , Dry Transportation ,
Offshore Structures . INTRODUCTION The analytical prediction of wave - related
loads acting on an offshore structure during its dry transportation on a heavy lift ...
Keywords : Wave Impact , Submergence , Heavy Lift Vessel , Dry Transportation ,
Offshore Structures . INTRODUCTION The analytical prediction of wave - related
loads acting on an offshore structure during its dry transportation on a heavy lift ...
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Contents
PART | 595 |
000000000000000000000000000000000000000000 | 605 |
OFFSHORE TECHNOLOGY | 608 |
Copyright | |
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Common terms and phrases
added amplitude analysis angle applied approach ASME assumed barge bending boundary buoy calculated capacity coefficient combined components computed connection considered Copyright corresponding damage damping deck depth determined developed diameter direction displacement dynamic effect element Engineering equation estimated event factor fatigue field Figure force FPSO frequency function given height horizontal hull iceberg impact increase installation jacket joint length limit linear load marine mass maximum mean measured method model tests mooring mooring lines mooring system motion natural numerical obtained Offshore operation parameters performed period pile pitch platform position possible potential predicted presented pressure problem range relative response riser shear ship shown shows simulations skirt solution spar speed strength stress structure surface Table tank tension trench values velocity vertical vessel wall wave wind