Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 10American Society of Mechanical Engineers, 1991 - Arctic regions |
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Page 427
... DEFORMATION CURVES Force Deformation Curves for Platform The local deformation of the platform is governed by denting of the main column . Force indentation relationships for denting have been presented by various authors . In this ...
... DEFORMATION CURVES Force Deformation Curves for Platform The local deformation of the platform is governed by denting of the main column . Force indentation relationships for denting have been presented by various authors . In this ...
Page 564
... deformation owing to its self - weight . Consequently , maximum axial deformation is expected at the top of the pipe . This axial deformation reduces along the pipe , and tends to zero at the free end . The bending moment due to ...
... deformation owing to its self - weight . Consequently , maximum axial deformation is expected at the top of the pipe . This axial deformation reduces along the pipe , and tends to zero at the free end . The bending moment due to ...
Page 584
... deformations and rotary inertia , provides an analytical model to investigate frames with semi - rigid joints for the first time . Furthermore , the possibility of calculating the deformation shapes establishes a theoretical ...
... deformations and rotary inertia , provides an analytical model to investigate frames with semi - rigid joints for the first time . Furthermore , the possibility of calculating the deformation shapes establishes a theoretical ...
Contents
CASE HISTORIES OFFSHORE STRUCTURES | 331 |
OFFSHORE TECHNOLOGY PART | 337 |
OFFSHORE STRUCTURE CONCEPTS | 361 |
Copyright | |
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acceleration accelerometers added mass amplitude axial beam behaviour bending stiffness cable calculated Campos Basin catenary coefficient compliant tower components curvature curves cylinder damping ratio deck deformation developed diameter displacement drag drag coefficient dynamic analysis dynamic response effect Ekofisk elastic Engineering equation finite element finite element method flexible pipe fluid force free-fall lifeboat frequency domain hydrodynamic hydrodynamic damping impact in-span installation jack jacket joint launch length lift force linear load Mathieu Mathieu equation measured Mechanics meters method mode mode shape motion natural frequency nodal nodes nonlinear obtained Offshore Structures OMAE operation oscillation parameters phase pile platform pressure rotation seabed semi-rigid shear shown in Figure skin friction soil solution SPUS static analysis stiffness matrix submarine subsea support point tension tether torque transverse values vector velocity vertical vessel vibration Volume I-B water depth