Amanote Research
Register
Sign In
Prediction of the Propeller-Induced Hull Pressure Fluctuation via a Potential-Based Method: Study of the Influence of Cavitation and Different Wake Alignment Schemes
doi 10.1115/1.861851_ch167
Full Text
Open PDF
Abstract
Available in
full text
Date
January 1, 2018
Authors
Unknown
Publisher
ASME Press
Related search
Numerical Analysis for the Prediction of Hull Pressure Fluctuation and Underwater Radiated Noise Induced by Marine Propeller Cavitation
Investigation on Numerical Prediction of Propeller Induced Hull Pressure Pulses
Investigation of Reynolds Number Scale Effects on Propeller Tip Vortex Cavitation and Propeller-Induced Hull Pressure Fluctuations
On Reduction of Cavitation Noise and Pressure Fluctuation Induced by a Cavitating Propeller Due to Air Injection
Journal of the Society of Naval Architects of Japan
Study on the Hybrid Method of CFD and Bubble Dynamics for Marine Propeller Cavitation Noise Prediction
CFD Analysis of Propeller Tip Vortex Cavitation in Ship Wake Fields
Prediction of Cavitation and Induced Erosion Inside a High-Pressure Fuel Pump
International Journal of Engine Research
Automotive Engineering
Ocean Engineering
Mechanical Engineering
Aerospace Engineering
Investigation of the Improvements in Cavitation and Pressure Pulse Due to the Endplate Propeller
Numerical Analysis of the Unsteady Propeller Performance in the Ship Wake Modified by Different Wake Improvement Devices
Polish Maritime Research
Ocean Engineering
Mechanical Engineering