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A study on the design methodologies of propeller root fillet surfaces having nT-T/m section

Authors
Ruy, W.-S.Lee, C.-S.Kim, D.-J.Kim, G.-D.Kim, K.-S.
Issue Date
2016
Publisher
DTU Mechanical Engineering, Technical University of Denmark
Keywords
B-spline surface; Blade root fillet design; Cavitation Inception Speed; Concentration stress factor; Higher-order panel method; Iges; NT-T/n section
Citation
PRADS 2016 - Proceedings of the 13th International Symposium on PRActical Design of Ships and Other Floating Structures
Journal Title
PRADS 2016 - Proceedings of the 13th International Symposium on PRActical Design of Ships and Other Floating Structures
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/8555
ISSN
0000-0000
Abstract
The blade root fillets which are the mechanical parts for a smooth connection surface between a propeller blade and a flange, have strong influences on the performance of propellers from both structural and hydrodynamic points of view. A few related studies (Sabol, 1983; Kennedy, et al., 1997) have issued that 3T-T/3 double radius section design would be more suitable for increasing CIS (Cavitation Inception Speed). However, all surfaces used at the experiments are the simple symmetrical, constant chord, uncambered, and untwisted NACA foil section and only a planar hub and NACA hub. On the other hand, our models are designed for the real CPP (Controllable Pitch Propeller) blades and flanges, and experimented for the performance of SCF (Stress Concentration Factor) and CIS as well. All generated models are examined through the numerical finite element method and the higher-order panel method.
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선박연구본부 > Naval Ship Engineering Research Center > 1. Journal Articles

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Kim, Gun Do
지능형선박연구본부 (함정공학연구센터)
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