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Study on the design of propeller blade sections using the optimization algorithm
Authors:Yoshihisa Takekoshi  Takafumi Kawamura  Hajime Yamaguchi  Masatsugu Maeda  Norio Ishii  Koyu Kimura  Tadashi Taketani  Akihiko Fujii
Institution:(1) Department of Environmental and Ocean Engineering, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan;(2) Akishima Laboratory (Mitsui Zosen) Inc., Tokyo, Japan;(3) Mitsui Engineering and Shipbuilding Co., Ltd., Tokyo, Japan
Abstract:A new method for designing propeller blade sections is presented. A vortex lattice method is used to evaluate the performance and the time-dependent pressure distribution on the blade surface in a non-uniform flow, while efficient optimization algorithms are used to modify the blade sections. Two different designs were carried out in this study. The first was a design to realize a target pressure distribution in a rotating three-dimensional flow. A two-dimensional wing theory was used to obtain the target pressure distribution. The predicted increase in efficiency and the reduction in the cavity volume were confirmed by model experiments. The second was a design to maximize the propeller efficiency. By this method, the propeller efficiency was improved by 1.2% under the constrains of constant thrust and a prescribed margin for face cavitation.
Keywords:Design optimization  Marine propeller  Cavitation  Propeller efficiency  Unsteady flow
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