Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 2American Society of Mechanical Engineers, 2006 - Arctic regions |
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Page 502
... Propeller Disk Area of Propeller Torque Coefficient , Co = Q / { 1⁄2p [ V22 + ( 0.7πnD ) 2 ] ( π / 4 ) D3 } Thrust Coefficient , C1 = T / { 1⁄2p [ V22 + ( 0.7πnD ) 2 ] ( π / 4 ) D2 } Propeller Diameter Expanded , or Blade , Area Ratio ...
... Propeller Disk Area of Propeller Torque Coefficient , Co = Q / { 1⁄2p [ V22 + ( 0.7πnD ) 2 ] ( π / 4 ) D3 } Thrust Coefficient , C1 = T / { 1⁄2p [ V22 + ( 0.7πnD ) 2 ] ( π / 4 ) D2 } Propeller Diameter Expanded , or Blade , Area Ratio ...
Page 678
... propeller plane . Pitch ratio По Tangential Components of Wake . Vtva 120 90 WR = 0.4005 WR - 0 5003 60 150 - 6001 # R - 0 8899 # R = 0.7997 30 # R - 0 8985 # R - 1.0007 Degree 180 -0.2 -0.1 0,1 é nr Constant power and rpm for B4-70 ...
... propeller plane . Pitch ratio По Tangential Components of Wake . Vtva 120 90 WR = 0.4005 WR - 0 5003 60 150 - 6001 # R - 0 8899 # R = 0.7997 30 # R - 0 8985 # R - 1.0007 Degree 180 -0.2 -0.1 0,1 é nr Constant power and rpm for B4-70 ...
Page 682
... propeller working in the wake of tunnel hull and working in the open water for various pitch distributions at J = 0.33 and n = 7.5 rps . It can be seen that with inflow wake taken in to account the propeller gave a better propulsive ...
... propeller working in the wake of tunnel hull and working in the open water for various pitch distributions at J = 0.33 and n = 7.5 rps . It can be seen that with inflow wake taken in to account the propeller gave a better propulsive ...
Contents
OCEAN ENGINEERING | 1 |
OMAE200692020 | 19 |
OMAE200692033 335 | 35 |
Copyright | |
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25th International Conference aerogel amplitude analysis angle Arctic Engineering June ASME B-spline boundary condition buoy calculated coefficient components computed Conference on Offshore Copyright 2006 cylinder damping density diameter distribution dynamic effect Engineering June 4-9 equation experimental Figure flow fluid force free surface frequency friction function hindcast horizontal hull hydrocyclone hydrodynamic ice loads ice strength interaction internal wave linear LNG carriers maximum measured Mechanics and Arctic method model tests motion neural network nonlinear numerical Ocean Engineering Offshore Mechanics OMAE2006 25th International oscillation parameters pile potential prediction pressure Proceedings of OMAE2006 propeller ratio regular wave Research shear shear stress ship ship motions significant wave height simulation solution spectra spectrum speed stress structure tank temperature towed vehicle trimaran values variable velocity velocity potential vertical vessel vibration VIVACE Converter vortex Vortex Induced Vibrations water depth wave energy wave power wind