Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 1; Volume 7, Part 1American Society of Mechanical Engineers, 1988 - Arctic regions |
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Page 142
... effect of the tooth as it bends as a cantilever , and the second is the stress raising effect of the tooth fillet on the tensile stress in the main body of the component . This second effect is the same as that of a notch in a bar under ...
... effect of the tooth as it bends as a cantilever , and the second is the stress raising effect of the tooth fillet on the tensile stress in the main body of the component . This second effect is the same as that of a notch in a bar under ...
Page 269
... Effect . The nonlinear effects due to large horizontal displacements and vertical loads ( P - delta ) can be introduced by an additional load vector consisting of fictitious equivalent lateral forces acting at each level . These lateral ...
... Effect . The nonlinear effects due to large horizontal displacements and vertical loads ( P - delta ) can be introduced by an additional load vector consisting of fictitious equivalent lateral forces acting at each level . These lateral ...
Page 453
... effect of elastic / plastic stability of the members are considered and the effect of shiel- ding in the hydrodynamic loads are estimated . The struc- tural analysis procedure is a finite element model in which a plastic hinge method is ...
... effect of elastic / plastic stability of the members are considered and the effect of shiel- ding in the hydrodynamic loads are estimated . The struc- tural analysis procedure is a finite element model in which a plastic hinge method is ...
Contents
FLOATING PRODUCTION SYSTEMS | 1 |
Semisubmersible Floating Production for the Gulf of Mexico | 13 |
OFFSHORE MECHANICS | 23 |
Copyright | |
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adsorber amplitude analysis angle Arctic Engineering axial bending buoy buoyancy cable calculated coefficient compliant tower components Conference on Offshore curve damage diameter displacement drag coefficient drilling dynamic effect energy equation equipment fatigue Figure finite element flexible floating production flow function horizontal hydrodynamic installation jacket kips length linear load marine mass matrix maximum measured Mechanics and Arctic method mode mode shapes model tests modulus mooring line mooring system motion natural frequency nonlinear obtained Offshore Mechanics Offshore Technology Conference operation parameters performance pile pipe pipe materials pipeline platform polyester pressure production riser random wave ratio response rope rotation RPIT shear shear modulus shear strength shown in Fig simulation soil static stiffness strength stress structure subsea surface syntactic foam turbine uranium vane velocity vertical vessel water depth wave forces wave height wave power weight wellhead wire