Numerical Analysis of the High Skew Propeller of an Underwater Vehicle

被引:1
|
作者
Hassan Ghasseni [1 ]
Parviz Ghadimi [1 ]
机构
[1] Department of Marine Technology Amirkabir University of Technology
关键词
boundary element method(BEM); hydrodynamic analysis; high skew propeller; surface and submerged conditions;
D O I
暂无
中图分类号
U664.33 [螺旋桨]; U661.1 [船舶流体力学];
学科分类号
摘要
A numerical analysis based on the boundary element method (BEM) was presented for the hydrodynamic performance of a high skew propeller (HSP) which is employed by an underwater vehicle (UV). Since UVs operate at two different working conditions (surface and submerged conditions), the design of such a propeller is a cumbersome task. This is primarily due to the fact that the resistance forces as well as the vessel efficiency under these conditions are significantly different. Therefore, some factors are necessary for the design of the optimum propeller to utilize the power at the mentioned conditions. The design objectives of the optimum propeller are to obtain the highest possible thrust, minimum torque, and efficiency. In the current study, a 5-bladed HSP was chosen for running the UV. This propeller operated at the stern of the UV hull where the inflow velocity to the propeller was non-uniform. Some parameters of the propeller were predicted based on the UV geometrical hull and operating conditions. The computed results include the pressure distribution and the hydrodynamic characteristics of the HSP in open water conditions, and comparison of these results with those of the experimental data indicates good agreement. The propeller efficiency for both submerged and surface conditions was found to be 67% and 64%, respectively, which compared to conventional propellers is a significantly higher efficiency.
引用
收藏
页码:289 / 299
页数:11
相关论文
共 50 条
  • [21] Experimental Study of the Collective and Cyclic Pitch Propeller for an Underwater Vehicle
    Minh Tran
    Binns, Jonathan
    Chai, Shuhong
    Forrest, Alex
    Hung Nguyen
    JOURNAL OF MARINE SCIENCE AND APPLICATION, 2018, 17 (04) : 592 - 602
  • [22] Design and Testing of an Amphibious Cycloidal Propeller Unmanned Underwater Vehicle
    Lephuoc, Jonathan
    Zhang, Chenliang
    Brown, Cayden
    Coleman, David
    Benedict, Moble
    OCEANS 2024 - SINGAPORE, 2024,
  • [23] A New Design of the High-Skew Ducted Propeller
    Fang, Bin
    Lei, Min
    Zhou, Qidou
    ELECTRICAL POWER & ENERGY SYSTEMS, PTS 1 AND 2, 2012, 516-517 : 1048 - +
  • [24] Numerical analysis on dynamic behaviors of coupled propeller-shafting system of underwater vehicles
    Li, Jiasheng
    Qu, Yegao
    Chen, Yong
    Hua, Hongxing
    APPLIED OCEAN RESEARCH, 2021, 110 (110)
  • [25] Shape optimization of an autonomous underwater vehicle with a ducted propeller using computational fluid dynamics analysis
    Joung, Tae-Hwan
    Sammut, Karl
    He, Fangpo
    Lee, Seung-Keon
    INTERNATIONAL JOURNAL OF NAVAL ARCHITECTURE AND OCEAN ENGINEERING, 2012, 4 (01) : 44 - 56
  • [26] Numerical study on control derivatives of a high-speed underwater vehicle
    Kim, Haedong
    Cho, Hyeonjin
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2011, 25 (03) : 759 - 765
  • [27] Numerical study on control derivatives of a high-speed underwater vehicle
    Haedong Kim
    Hyeonjin Cho
    Journal of Mechanical Science and Technology, 2011, 25
  • [28] Hydrodynamic Performance Investigation of High-efficiency Integrated Contra-rotating Propeller for Underwater Vehicle
    Zhang, Shukuan
    Zhang, Yusen
    Peng, Siyi
    Xiang, Chuan
    2024 15TH INTERNATIONAL CONFERENCE ON MECHANICAL AND INTELLIGENT MANUFACTURING TECHNOLOGIES, ICMIMT 2024, 2024, : 52 - 56
  • [29] Numerical Simulation of the Launching of Underwater Vehicle
    Hai-long, Huang
    Wei, Cao
    Cong, Wang
    MECHATRONICS ENGINEERING, COMPUTING AND INFORMATION TECHNOLOGY, 2014, 556-562 : 4404 - 4407
  • [30] Numerical prediction of maneuverability of underwater vehicle
    Lin, Zhaowei
    Meng, Sheng
    Yin, Hong
    Kou, Guanyuan
    Ship Building of China, 2016, 57 (01): : 59 - 68