船舶与海洋工程

采用扭曲舵的船-桨-舵的优化设计及验证

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  • (上海船舶研究设计院,上海  201203)

收稿日期: 2023-03-02

  修回日期: 2023-04-01

  录用日期: 2023-04-01

  网络出版日期: 2023-04-01

Optimization design and verification of ship-propeller-rudder using twisted rudder

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Received date: 2023-03-02

  Revised date: 2023-04-01

  Accepted date: 2023-04-01

  Online published: 2023-04-01

摘要

为兼顾不同工况下多工况船型均能具备较好的阻力性能和空泡特性,对母型船的船-桨-舵的推进系统组合进行优化设计。针对母型船的尾部船体线型与船桨匹配,优化主要剖面、螺旋桨,并选用高性能舵。对优化后模型进行敞水、自航、空泡试验,结果显示,对母型船船-桨-舵的推进系统优化有效提升了阻力性能,并且能够降低高速工况下的不利空泡影响。

本文引用格式

尤恽, 张弘, 王瑞阳, 周渊昊, 王锋, 钱建华 . 采用扭曲舵的船-桨-舵的优化设计及验证[J]. 大连海事大学学报, 2023 , 49(2) : 42 -47 . DOI: 10.16411/j.cnki.issn1006-7736.2023.02.005

Abstract

Due to its multi-working characteristics, multi-condition ship type usually has several speeds.In order to take into account the good resistance performance and cavitation characteristics under different working conditions, this paper optimizes the design of the ship-propeller-rudder propulsion system combination of the mother ship. For the tail flow field area, the stern hull line of the mother ship is matched for the ship-propeller-rudder, the main section, propeller, and high-performance rudder are selected. The open water, self-propelled and cavitation tests of the optimized model show that the optimization of the ship-propeller-rudder propulsion system of the mother ship can effectively improve the resistance performance and reduce the adverse cavitation influence under high-speed working conditions.

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