Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 5American Society of Mechanical Engineers, 1988 - Arctic regions |
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Page 75
... method moves a subsea pipeline end buoyed off of the seabed to a receiver by shortening pull - in cables . This installation method has proven to be an efficient means of connecting a subsea pipeline and can be accomplished without ...
... method moves a subsea pipeline end buoyed off of the seabed to a receiver by shortening pull - in cables . This installation method has proven to be an efficient means of connecting a subsea pipeline and can be accomplished without ...
Page 76
... method can be an effi- cient pipeline installation technique . It has been used successfully on several developments . The finite element method can provide the necessary design infor- mation . EXAMPLES OF FIELD INSTALLATION The ...
... method can be an effi- cient pipeline installation technique . It has been used successfully on several developments . The finite element method can provide the necessary design infor- mation . EXAMPLES OF FIELD INSTALLATION The ...
Page 194
... method can efficiently provide the desired variable trenching depth and be used to perform multiple trenching passes . The preferred trenching method has normally been the jet - sled method . This method , in fact , satisfies the ...
... method can efficiently provide the desired variable trenching depth and be used to perform multiple trenching passes . The preferred trenching method has normally been the jet - sled method . This method , in fact , satisfies the ...
Contents
Model Tests | 3 |
B Bryndum V Jacobsen and D T Tsahalis 9 | 21 |
Scour Under Pipelines | 33 |
Copyright | |
33 other sections not shown
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acoustic velocity analysis Arctic Engineering axial behaviour bending bottom boundary layer buckling cable calculated clamp Cobia compression corrosion crack cylinder deflection deformation developed dew point diameter drag drag coefficient effect elastic equation experimental field Figure finite element flow force coefficients free span frequency friction friction welding function hoop stress horizontal Hydraulic hydrodynamic hydrodynamic forces in-line installation irregular waves length lift coefficient lift force liquid load maximum measured mechanical method monitoring movement nodal analysis operating parameters phase pipe displacement pipe material pipeline predicted pressure procedure ratio response riser roughness SCADA scour sea bed sea floor seabed shown simulated slug soil steady current steel storm strain strain gauges stress structural submarine pipelines surface Technology temperature tion Turning Bands underwater values variation vertical vortex shedding water depth welding zone