Analysis of influence of duct geometrical parameters on pump jet propulsor hydrodynamic performance

被引:0
|
作者
Chao Wang
Kaiqiang Weng
Chunyu Guo
Xin Chang
Lang Gu
机构
[1] Harbin Engineering University,College of Shipbuilding Engineering
关键词
Pump jet thrust; Duct geometrical parameters; Performance prediction; Surface panel method; Tip leakage vortex model;
D O I
暂无
中图分类号
学科分类号
摘要
To analyze the influence of duct geometrical parameters on hydrodynamic performance of pump jet propulsor, this paper presents a surface panel method for predicting performance of pump jet propulsor. And, moreover, a meshing method for blade, based on circular conical surface, is proposed. According to the actual situation of the internal flow of the pump jet propulsor, a tip leakage vortex model for the blades with flat top is also proposed. The hydrodynamic performance of pump jet propulsor under different conditions was calculated and compared with CFD results for the verification of the presented method. Then the influence of duct parameters on pump jet performance was analyzed from several aspects including performance index, surface pressure distribution, and flow velocity. The results show that variations of gap size, camber or attack angle of duct result in different hydrodynamic performance. Suitable selection of duct geometry can significantly increase the thrust efficiency of the pump jet propulsor, expand the range of effective work, and improve the loading characteristics of the blade.
引用
收藏
页码:640 / 657
页数:17
相关论文
共 50 条
  • [1] Analysis of influence of duct geometrical parameters on pump jet propulsor hydrodynamic performance
    Wang, Chao
    Weng, Kaiqiang
    Guo, Chunyu
    Chang, Xin
    Gu, Lang
    JOURNAL OF MARINE SCIENCE AND TECHNOLOGY, 2020, 25 (02) : 640 - 657
  • [2] Effects of duct parameter on pump-jet propulsor unsteady hydrodynamic performance
    Huang, Qiaogao
    Li, Han
    Pan, Guang
    Dong, Xinguo
    Ocean Engineering, 2021, 221
  • [3] Effects of duct parameter on pump-jet propulsor unsteady hydrodynamic performance
    Huang, Qiaogao
    Li, Han
    Pan, Guang
    Dong, Xinguo
    OCEAN ENGINEERING, 2021, 221
  • [4] The hydrodynamic performance analysis of a submarine with new pump-jet propulsor
    Li, Xin-Ran
    Ding, Yun
    Wang, Wen-Quan
    OCEAN ENGINEERING, 2022, 245
  • [5] Prediction of steady hydrodynamic performance of pump jet propulsor considering vessel body influence
    Qiang, Weng Kai
    Chao, Wang
    Peng, Li
    Jian, Hu
    Cong, Sun
    OCEAN ENGINEERING, 2022, 247
  • [6] Numerical analysis of unsteady hydrodynamic performance of pump-jet propulsor in oblique flow
    Qiu, Chengcheng
    Pan, Guang
    Huang, Qiaogao
    Shi, Yao
    INTERNATIONAL JOURNAL OF NAVAL ARCHITECTURE AND OCEAN ENGINEERING, 2020, 12 : 102 - 115
  • [7] Numerical simulation of steady hydrodynamic performance of a pump-jet propulsor
    Pan, Guang
    Hu, Bin
    Wang, Peng
    Yang, Zhi-Dong
    Wang, Yi-Yun
    Pan, G. (panguang601@163.com), 1600, Shanghai Jiaotong University (47): : 932 - 937
  • [8] Hydrodynamic performance prediction of a pump jet and impact analysis of a duct camber
    Gu L.
    Wang C.
    Hu J.
    Wang, Chao (wangchao806@hrbeu.edu.cn), 1752, Editorial Board of Journal of Harbin Engineering (39): : 1752 - 1759
  • [9] Effect of the gap-flow model on the hydrodynamic performance of a pump-jet propulsor
    Weng K.
    Wang C.
    Hu J.
    Gu L.
    Harbin Gongcheng Daxue Xuebao/Journal of Harbin Engineering University, 2021, 42 (01): : 21 - 26
  • [10] Prediction of hydrodynamic performance of pump jet propulsor considering the effect of gap flow model
    Hu Jian
    Weng Kaiqiang
    Wang Chao
    Gu Lang
    Guo Chunyu
    OCEAN ENGINEERING, 2021, 233