Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 11, Part 5American Society of Mechanical Engineers, 1992 - Arctic regions |
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Page 42
compressibility factor of 0.2 % within the pressure range 0-300 bar and the temperature range 100-350K . The average percentage error in the density , taking the experimental error into account , is 0.386 % . The IUPAC compressibility ...
compressibility factor of 0.2 % within the pressure range 0-300 bar and the temperature range 100-350K . The average percentage error in the density , taking the experimental error into account , is 0.386 % . The IUPAC compressibility ...
Page 176
... range of +/- 0.1 to +/- 0.5 inch , and a frequency range of 1.5 to 4 Hz . The force and displacement histories provided the effective stiffness and effective damping ratio of the tested configuration . The tests were conducted on 3 and ...
... range of +/- 0.1 to +/- 0.5 inch , and a frequency range of 1.5 to 4 Hz . The force and displacement histories provided the effective stiffness and effective damping ratio of the tested configuration . The tests were conducted on 3 and ...
Page 177
... range from approximately 1.5 to 4 Hz , which is consistent with the predicted frequency range . 7.2 WIV Data The data acquisition system was programmed to record data after initiation by either a displacement trigger or a wind trigger ...
... range from approximately 1.5 to 4 Hz , which is consistent with the predicted frequency range . 7.2 WIV Data The data acquisition system was programmed to record data after initiation by either a displacement trigger or a wind trigger ...
Contents
MEASUREMENT AND METERING | 1 |
OFFSHORE PIPELINE TECHNOLOGY | 53 |
CODESSTANDARDS AND REGULATIONS | 75 |
Copyright | |
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Alberta analysis applied Arctic assessment axial bending buckling calculated calibration construction corrosion crack criteria cylinder damage defects depth developed discharge coefficient displacement distribution downstream effect Engineering environmental equation equipment estimated evaluation experimental failure probability fatigue finite element flow function fluid force fractile fracture fracture mechanics frequency frost heave function gas pipeline hoop stress installation leak detection lift force limit Limit States Design load lognormal longitudinal maximum measured Mechanics meter tube methods nozzle offshore pipelines OMAE operating orifice plate parameters pipe wall pipeline spans pipeline system Pipeline Technology ASME plastic predicted pressure ratio reliability Reynolds number S-N curve sample scour shear stress simulation soil specific standards steel strain structural Table Technology ASME 1992 temperature differential tube bundle turbulent upstream usage factor velocity profile vibration volumetric flow rate vortex shedding wall thickness weld yield strength