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대형공동수조를 활용한 복합재료 프로펠러의 추진 성능 및 공동 성능 시험법에 대한 연구A Study on Propulsion Performance and Cavitation Test Method of Composite Propellers Using a Large Cavitation Tunnel

Other Titles
A Study on Propulsion Performance and Cavitation Test Method of Composite Propellers Using a Large Cavitation Tunnel
Authors
김성훈박정용이형석최희영정홍석설한신김명진
Issue Date
6월-2025
Publisher
대한조선학회
Keywords
Composite propeller(복합재료 프로펠러); Propulsion test(추진 성능 시험); Cavitation test(공동시험); Mach number scaling (마하수 상사); Large Cavitation Tunnel(LCT; 대형공동수조)
Citation
대한조선학회 논문집, v.62, no.3, pp 179 - 186
Pages
8
Journal Title
대한조선학회 논문집
Volume
62
Number
3
Start Page
179
End Page
186
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/11107
DOI
10.3744/SNAK.2025.62.3.179
ISSN
1225-1143
2287-7355
Abstract
Unlike traditional metallic marine propellers, which primarily consider hydrodynamic scaling, composite propellers require consideration of hydro-elastic scaling, accounting for both hydrodynamic forces and the deformation of the propeller blades. Model tests using by Mach number scaling, which must be performed at the same flow velocity of full-scale propellers, for hydro-elastic scaling of the composite propeller is conducted at the large cavitation tunnel (LCT). The deformation and performance of the composite propellers is influenced by flow velocity, necessitating tests under different velocities. This study presents the results of propeller open-water tests conducted across a range of velocities to assess the effect of the velocity on the propeller open-water characteristics. Additionally, a self-propulsion test of the composite propeller is conducted in the LCT. Based on the results, new prediction methods are proposed to estimate the full-scale performance of the composite propeller, and then applied to predict the full-scale performance of the composite propeller in comparison with that of the metallic propeller. This study also introduces a cavitation test method of the composite propeller based on the Mach number scaling. Using this method, the cavitation test is conducted to evaluate the cavitation performance of the composite propellers. Future work will focus on validating the proposed test method by comparing and analyzing the measured data of full-scale.
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Jeong, Hongseok
지능형선박연구본부 (함정공학연구센터)
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