Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 18, Part 5American Society of Mechanical Engineers, 1999 - Arctic regions |
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Page 174
... solution ( 5 ) numerically by solving the simultaneous lin- ear equation ( 8 ) . Substituting the obtained numerical complex coefficients into the general solution ( 5 ) , we can then obtain the velocity potential function having the ...
... solution ( 5 ) numerically by solving the simultaneous lin- ear equation ( 8 ) . Substituting the obtained numerical complex coefficients into the general solution ( 5 ) , we can then obtain the velocity potential function having the ...
Page 225
... solution of this elas- tohydrodynamic problem will give the desired ice force . The main objective is to determine the influence that ice sheet veloc- ity , slope angle , and ice - structure friction have on the ice force . A transition ...
... solution of this elas- tohydrodynamic problem will give the desired ice force . The main objective is to determine the influence that ice sheet veloc- ity , slope angle , and ice - structure friction have on the ice force . A transition ...
Page 229
... solution of this elastohydro- dynamic problem will give the desired ice force . An analytical solution has been provided for the case of relatively slow inter- actions . The importance of truly hydrodynamic solutions was emphasized ...
... solution of this elastohydro- dynamic problem will give the desired ice force . An analytical solution has been provided for the case of relatively slow inter- actions . The importance of truly hydrodynamic solutions was emphasized ...
Contents
OMAE99PA1135 | 19 |
OMAE99PA1141 | 39 |
PROPELLERICE INTERACTION | 53 |
Copyright | |
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Allen Bay analysis angle Arctic Engineering ASME average boundary brittle calculated Canada channel coefficient component compressive cone Confederation Bridge Conference on Offshore contact area Copyright 1999 crack creep creep deformation crushed deformation density determined diameter distribution dynamic effect equation estimate failure stress Figure floes fracture frequency friction frozen soil full scale gas hydrate Grand Banks horizontal hydrodynamic ice block ice class ice conditions ice force ice loads ice pieces ice sheet ice strength ice thickness iceberg iceberg management icebreaker increase indentation tests indentor interaction layer level ice maximum measured Mechanics and Arctic mm/s Newfoundland Northern Sea Route observed Offshore Mechanics parameters peak Pechora Sea piers pipeline planetary boundary layer predicted pressure ratio Research resistance rubble Sakhalin salinity scantlings scour sea ice sensors shape shear ship shows speed stamukha surface temperature thrust torque values velocity vertical water depth width wind zone