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Volumn 24, Issue 5, 2012, Pages 658-667
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Experimental estimation of a scaling exponent for tip vortex cavitation via its inception test in full- and model-ship
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Author keywords
scaling exponent; tip vortex cavitation; underwater radiated noise
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Indexed keywords
ACOUSTICAL MEASUREMENTS;
COMMERCIAL SHIPS;
FULL SCALE;
INDUCED NOISE;
MARINE PROPELLER;
MODEL TESTS;
NAVAL SHIP;
NOISE MEASUREMENTS;
POWER EXPONENT;
PROPELLER NOISE;
RADIATED NOISE;
SCALING EXPONENT;
SIGNAL PROCESSING TECHNIQUE;
TIP VORTEX;
TIP VORTEX CAVITATIONS;
UNDERWATER SURVEILLANCE;
WATER CAVITATION;
ACOUSTIC NOISE;
ACOUSTIC NOISE MEASUREMENT;
AERODYNAMICS;
CAVITATION;
ENVIRONMENTAL IMPACT;
RESEARCH;
REYNOLDS NUMBER;
SCALING LAWS;
SHIP PROPULSION;
SIGNAL PROCESSING;
WARSHIPS;
WIND TUNNELS;
SHIP MODEL TANKS;
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EID: 84868567378
PISSN: 10016058
EISSN: None
Source Type: Journal
DOI: 10.1016/S1001-6058(11)60289-8 Document Type: Article |
Times cited : (13)
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References (14)
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