Parametric Design of a New Float-Type Wave Energy Generator and Numerical Simulation of Its Hydrodynamic Performance

被引:0
|
作者
Zhang, Yu [1 ]
Li, Dongqin [1 ]
机构
[1] Jiangsu Univ Sci & Technol, Sch Naval Architecture & Ocean Engn, Zhenjiang 212100, Peoples R China
关键词
wave power generation; oscillating float; computational fluid dynamics; hydrodynamic performance;
D O I
10.3390/jmse11112192
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
A novel float-type device for wave energy power generation, designed specifically for offshore wave environments, is introduced as an innovative technology in wave energy utilization. Herein, we present the design concept, structural composition, and energy conversion process of the device, and conduct mathematical modeling and theoretical research on its kinematic and dynamic characteristics. At the same time, we use a numerical wave pool based on the STAR-CCM+ boundary wave making method and damping dissipation method to analyze the motion response and output power of the wave energy generator in a five-order Stokes wave environment within one wave cycle and the entire operating cycle. Finally, in order to develop the best design strategy, we study the effect of changing the structural parameters of the power generation device on the hydrodynamic performance of the device.
引用
收藏
页数:25
相关论文
共 50 条
  • [21] Hydrodynamic Performance Study of Wave Energy–Type Floating Breakwaters
    Hengming Zhang
    Xincheng Ding
    Binzhen Zhou
    Liang Zhang
    Zheng Yuan
    Journal of Marine Science and Application, 2019, 18 : 64 - 71
  • [22] Type selection and hydrodynamic performance analysis of wave energy converters
    Sun K.
    Xie G.
    Zhou B.
    Harbin Gongcheng Daxue Xuebao/Journal of Harbin Engineering University, 2021, 42 (01): : 8 - 14
  • [23] Axial-Flux Permanent Magnet Synchronous Generator for Float Buoy Type Wave Energy Converters
    Sattarov, Robert R.
    Ziganshin, Timur
    2019 DYNAMICS OF SYSTEMS, MECHANISMS AND MACHINES (DYNAMICS), 2019,
  • [24] Linear parametric hydrodynamic models for ocean wave energy converters identified from numerical wave tank experiments
    Davidson, Josh
    Giorgi, Simone
    Ringwood, John V.
    OCEAN ENGINEERING, 2015, 103 : 31 - 39
  • [25] Correction to: Numerical investigation of parametric resonance due to hydrodynamic coupling in a realistic wave energy converter
    Giuseppe Giorgi
    Rui P. F. Gomes
    Giovanni Bracco
    Giuliana Mattiazzo
    Nonlinear Dynamics, 2021, 105 : 2847 - 2847
  • [26] Design and hydrodynamic performance testing of a new pressure sand filter diffuser plate using numerical simulation
    Mesquita, Marcio
    de Deus, Fabio P.
    Testezlaf, Roberto
    da Rosa, Leonardo M.
    Diotto, Adriano, V
    BIOSYSTEMS ENGINEERING, 2019, 183 : 58 - 69
  • [27] Hydrodynamic Performance Study of Wave Energy-Type Floating Breakwaters
    Zhang, Hengming
    Ding, Xincheng
    Zhou, Binzhen
    Zhang, Liang
    Yuan, Zheng
    JOURNAL OF MARINE SCIENCE AND APPLICATION, 2019, 18 (01) : 64 - 71
  • [28] Wave energy converters design combining hydrodynamic performance and structural assessment
    Giannini, Gianmaria
    Rosa-Santos, Paulo
    Ramos, Victor
    Taveira-Pinto, Francisco
    ENERGY, 2022, 249
  • [29] NUMERICAL STUDY ON THE OPTIMIZATION OF HYDRODYNAMIC PERFORMANCE OF OSCILLATING BUOY WAVE ENERGY CONVERTER
    Lai, Wenbin
    Xie, Yonghe
    Li, Detang
    POLISH MARITIME RESEARCH, 2021, 28 (01) : 48 - 58
  • [30] Numerical Investigation on Hydrodynamic Performance of an OWC Wave Energy Device in the Stepped Bottom
    Ning, De-Zhi
    Ke, Song
    Mayon, Robert
    Zhang, Chongwei
    FRONTIERS IN ENERGY RESEARCH, 2019, 7