Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 3American Society of Mechanical Engineers, 2002 - Arctic regions |
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Page 308
... locations Figure 1 - C2 specimen Detailed information of the modelling and discussion of the results can be seen in [ 12 ] and an improvement of the studied structures with respect to fatigue damage can be found in [ 13 ] . Hot spot ...
... locations Figure 1 - C2 specimen Detailed information of the modelling and discussion of the results can be seen in [ 12 ] and an improvement of the studied structures with respect to fatigue damage can be found in [ 13 ] . Hot spot ...
Page 309
... Locations of the high stress areas on C2 models Figure 5 shows the locations of the high stressed areas ( HSA ) on the C2.1 and the C2.2 models . Three out of four of them are located on the upper plate . Two of them are located above ...
... Locations of the high stress areas on C2 models Figure 5 shows the locations of the high stressed areas ( HSA ) on the C2.1 and the C2.2 models . Three out of four of them are located on the upper plate . Two of them are located above ...
Page 310
... locations A , D , E and H are at the horizontal and the vertical plate of the specimen , while the cracks B , C , G and F are located on the diagonal plate of the specimen . Even if the four crack locations ( within each of these two ...
... locations A , D , E and H are at the horizontal and the vertical plate of the specimen , while the cracks B , C , G and F are located on the diagonal plate of the specimen . Even if the four crack locations ( within each of these two ...
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21st International Conference alloys analysis anchor applied assessment axial calculated coating coefficient composite compressive Conference on Offshore corrosion crack growth crack initiation damage defect deformation depth Det Norske Veritas developed diameter displacement distribution effect Engineering June 23-28 equation evaluation failure fatigue crack fatigue test Figure finite element flaw flexible pipe flowline fracture mechanics fracture toughness function Grade heat hydrogen hydrogen embrittlement ice load increase installation insulation integrity joint laser weld layer length longitudinal maximum measured mechanical properties method Norsk Hydro Norway Offshore Mechanics parameters performed piezoelectric pipeline plastic plate predicted pressure reliability residual stress rope S-N curve safety factors sensors shown simulation solution specimens steel strain strength stress range surface syntactic foam Table Technology temperature tensile tension thermal thermal conductivity thermal insulation thickness titanium titanium risers uncertainties variables velocity Weibull distribution yield strength