Rapid aerodynamic method for predicting the performance of interacting wing sails

被引:1
|
作者
Malmek, Karolina [1 ,2 ]
Larsson, Lars [2 ]
Werner, Sofia [1 ]
Ringsberg, Jonas W. [2 ]
Bensow, Rickard [2 ]
Finnsgard, Christian [1 ]
机构
[1] RISE Res Inst Sweden, Maritime Dept, Safety & Transport Div, S-41258 Gothenburg, Sweden
[2] Chalmers Univ Technol, Dept Mech & Maritime Sci, SE-412 96 Gothenburg, Sweden
基金
瑞典研究理事会;
关键词
Wind-assisted propulsion; Wind propulsion system (WPS); Sail interaction; Lifting line method; Wind-assisted ship propulsion (WASP); Wing sails; MULTIPLE;
D O I
10.1016/j.oceaneng.2023.116596
中图分类号
U6 [水路运输]; P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
Rapid performance prediction tools are required for the evaluation, optimization, and comparison of different wind propulsion systems (WPSs). These tools should capture viscous aerodynamic flow effects in 3D, particularly the maximum propulsion force, stall angles, and interaction effects between the lift-generating units. This paper presents a rapid aerodynamic calculation method for wing sails that combines a semi -empirical lifting line model with a potential flow-based interaction model to account for 3D interaction effects. The method was applied to a WPS that consisted of several wing sails with considerable interaction effects. The results were compared to CFD RANS simulations in 2D and in 3D. For the evaluated validation cases, the interaction model improved the prediction considerably compared to when the interaction was not accounted for. The method provided acceptable driving force, moments, and stall predictions, with negligible computational cost compared to 3D CFD simulations.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Effects of Wing plane Shape of Flexible Flapping Wing on the Aerodynamic Performance
    Kwon, Hyun Ki
    Chang, Jo Won
    JOURNAL OF THE KOREAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, 2024, 52 (10) : 767 - 773
  • [22] Wing flexibility effect on aerodynamic performance of different flapping wing planforms
    Addo-Akoto, Reynolds
    Yang, Hyeon-Ho
    Han, Jong-Seob
    Han, Jae-Hung
    JOURNAL OF FLUIDS AND STRUCTURES, 2023, 123
  • [23] Effect of Wing Membrane Material on the Aerodynamic Performance of Flexible Flapping Wing
    Lang, Xinyu
    Song, Bifeng
    Yang, Wenqing
    Yang, Xiaojun
    APPLIED SCIENCES-BASEL, 2022, 12 (09):
  • [24] Method for calculating aerodynamic characteristics of a deformable wing
    Lyaskin, AS
    Shakhov, VG
    IZVESTIYA VYSSHIKH UCHEBNYKH ZAVEDENII AVIATSIONAYA TEKHNIKA, 2000, (04): : 15 - 17
  • [25] Study of the effects of wing sweep on the aerodynamic performance of a blended wing body aircraft
    Siouris, S.
    Qin, N.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 2007, 221 (G1) : 47 - 55
  • [26] Effect of wing geometrical parameters on the aerodynamic performance of wing in ground marine craft
    Mohamed, M.
    Amin, I.
    MARITIME TECHNOLOGY AND ENGINEERING 3, VOLS 1-2, 2016, : 347 - 352
  • [27] The spatial-temporal effects of wing flexibility on aerodynamic performance of the flapping wing
    Peng, Liansong
    Pan, Tianyu
    Zheng, Mengzong
    Su, Guanting
    Li, Qiushi
    PHYSICS OF FLUIDS, 2023, 35 (01)
  • [28] Effects of wing flexibility on aerodynamic performance of an aircraft model
    Qinfeng GUO
    Xi HE
    Zhuo WANG
    Jinjun WANG
    Chinese Journal of Aeronautics , 2021, (09) : 133 - 142
  • [29] Aerodynamic performance of distributed electric propulsion with wing interaction
    Lei, Yao
    Yang, Wen-jie
    Huang, Yi-yong
    JOURNAL OF ZHEJIANG UNIVERSITY-SCIENCE A, 2022, 23 (01): : 27 - 39
  • [30] The Aerodynamic Effects of Distributed Propulsion on the Performance of a UAV Wing
    Shih, Jyun Han
    Wang, Pei Ching
    Chen, Ching-Yao
    Lua, Kim Boon
    JOURNAL OF AEROSPACE ENGINEERING, 2025, 38 (02)