Affiliation:
1. Department of Naval Architecture, Marine Engineering and Electrical Engineering (DINAEL), Genoa University, 16126 Genoa, Italy
2. Department of Mechanical Engineering (DIME), Genoa University, 16126 Genoa, Italy
Abstract
In the present paper an experimental and numerical analysis of an unconventional CLT propeller is carried out. Two different numerical approaches, a potential panel method and an RANSE solver, are employed. Cavitation tunnel experiments are carried out in order to measure, as usual, thrust, torque, and cavity extension for different propeller working points. Moreover, LDV measurements are performed to have a deep insight into the complex wake behind the propeller and to analyze the dynamics of generated tip vortexes. The numerical/experimental analysis and comparison of results highlight the peculiarities of this kind of propellers, the possibility to increase efficiency and reduce cavitation risk, in order to exploit the design approaches already well proven for conventional propellers also in the case of these unconventional geometries.
Subject
Industrial and Manufacturing Engineering,Mechanical Engineering
Cited by
32 articles.
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