Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volumes 5-6; Volume 8, Parts 5-6American Society of Mechanical Engineers, 1989 - Arctic regions |
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Page 103
... term response is evaluated by integration of conditional short - term distributions over the environment para- meter range . The exceedance probability for given displacement levels is determined from the resulting cumulative ...
... term response is evaluated by integration of conditional short - term distributions over the environment para- meter range . The exceedance probability for given displacement levels is determined from the resulting cumulative ...
Page 105
... TERM PIPELINE RESPONSE The long term distribution of accumulated pipe- line displacement for a reference period corresponding to the duration of a single sea state ( 3 hours ) , is calculated as a weighted sum of the conditional single ...
... TERM PIPELINE RESPONSE The long term distribution of accumulated pipe- line displacement for a reference period corresponding to the duration of a single sea state ( 3 hours ) , is calculated as a weighted sum of the conditional single ...
Page 107
... term probability density and the cumulative distribution function are given in Figure 2 for a submerged pipe weight ... term response is unaltered , but the long term variance has increased due to larger short term response variances ...
... term probability density and the cumulative distribution function are given in Figure 2 for a submerged pipe weight ... term response is unaltered , but the long term variance has increased due to larger short term response variances ...
Contents
PIPELINE DESIGN AND OPERATIONS | 1 |
PIPELINE FORCES DYNAMICS AND STABILITY I | 95 |
9 | 123 |
Copyright | |
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amplitude analysis applied Arctic Engineering axial base metal bending Buckle length buckling bundle calculated coefficient compressor Conference on Offshore corrosion crack curvature deformation developed diameter displacement ductile effect Eighth International Conference electrodes equation explosive welding failure flaw flow rate gas turbine geometry heat horizontal hydrodynamic hydrodynamic forces hydrogen inertial installation laboratory length lift force line pipe liquid load maximum measured Mechanics and Arctic meters method monitoring natural burial Offshore Mechanics Offshore Technology Conference operation parameters predicted present pressure problem procedure ratio reheated reliability repair resistance response rockdumps sand SAW metal scour depth seabed shown in Figure simulation Snøhvit soft zone soil Sørøya sour gas span Statoil steel stress structural submarine pipelines submerged arc welding Sumer surface Table Technology temperature tion tool trench velocity vertical vibration viscometer viscosity vortex vortex shedding wave