Fatigue life prediction of composite tidal turbine blades

被引:14
|
作者
Gonabadi, Hassan [1 ]
Oila, Adrian [1 ]
Yadav, Arti [1 ]
Bull, Steve [1 ]
机构
[1] Newcastle Univ, Sch Engn, Newcastle Upon Tyne NE1 7RU, Tyne & Wear, England
关键词
Tidal turbine blades; Fatigue life; Hydrodynamics; Finite element modelling; Polymer composites; Failure modes; BEHAVIOR; DESIGN; DAMAGE;
D O I
10.1016/j.oceaneng.2022.111903
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
Fibre reinforced polymer composites are frequently used in the design of tidal turbine blades where cyclic stresses brought on by the velocity fluctuations of tidal currents limit the in-service life of the blade. This paper presents a fatigue life prediction methodology for composite tidal turbine blades based on combined hydrodynamic and finite element structural models with the view to characterize the fatigue properties and failure modes of candidate composite material manufactured by vacuum assisted resin transfer moulding process. A hydrodynamic analysis is presented of the tidal flows over a typical tidal turbine blade. Using stream tube method, the temporal variations of tidal flows including the effect of support structure and waves provide the cyclic loading of the blades. The fatigue data for the tested material under realistic marine conditions is then used as input into the fatigue model which allows the prediction of the fatigue life. Incorporating fatigue failure modes with the finite element stress analysis of tidal turbine blades, showed that environmentally affected fatigue failure modes such as delamination is associated with blade root area when the blade is subjected to the cyclic tidal currents. Case study results for two commercial scale tidal turbine blades with energy output of 1.5 and 0.35 MW are shown to establish the methodology. The tidal turbine blade design methodology presented here can be used to assess the life expectancy of composite blade and tidal device energy production.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Integrating variable wind load, aerodynamic, and structural analyses towards accurate fatigue life prediction in composite wind turbine blades
    Weifei Hu
    K. K. Choi
    Olesya Zhupanska
    James H.J. Buchholz
    Structural and Multidisciplinary Optimization, 2016, 53 : 375 - 394
  • [32] Life Prediction of Composite Turbine Blades under Random Ocean Current and Velocity Shear
    Mahfuz, Hassan
    Akram, Mohammad W.
    2011 IEEE - OCEANS SPAIN, 2011,
  • [33] Passively morphing trailing edge design for composite tidal turbine blades
    Maguire, James M.
    Mamalis, Dimitrios
    Otomo, Shuji
    Mccarthy, Edward D.
    COMPOSITE STRUCTURES, 2024, 337
  • [34] Finite element based damage assessment of composite tidal turbine blades
    Fagan, Edward M.
    Leen, Sean B.
    Kennedy, Ciaran R.
    Goggins, Jamie
    11TH INTERNATIONAL CONFERENCE ON DAMAGE ASSESSMENT OF STRUCTURES (DAMAS 2015), 2015, 628
  • [35] State of the art in fatigue modelling of composite wind turbine blades
    Rubiella, Clemence
    Hessabi, Cyrus A.
    Fallah, Arash Soleiman
    INTERNATIONAL JOURNAL OF FATIGUE, 2018, 117 : 230 - 245
  • [36] Operational fatigue loading on tidal turbine blades using computational fluid dynamics
    Finnegan, William
    Fagan, Edward
    Flanagan, Tomas
    Doyle, Adrian
    Goggins, Jamie
    RENEWABLE ENERGY, 2020, 152 : 430 - 440
  • [37] Probabilistic fatigue design of composite material for wind turbine blades
    Toft, H. S.
    Sorensen, J. D.
    APPLICATIONS OF STATISTICS AND PROBABILITY IN CIVIL ENGINEERING, 2011, : 1185 - 1192
  • [38] Threshold damage-based fatigue life prediction of turbine blades under combined high and low cycle fatigue
    Yue, Peng
    Ma, Juan
    Huang, Han
    Shi, Yang
    Zu, Jean W.
    INTERNATIONAL JOURNAL OF FATIGUE, 2021, 150
  • [39] The fatigue life analysis of turbine blades in the air cycle machine
    Hu Tengyue
    Sun Sheng
    Zeng Zhaoyang
    Zeng Chenhui
    Yu Yang
    2017 PROGNOSTICS AND SYSTEM HEALTH MANAGEMENT CONFERENCE (PHM-HARBIN), 2017, : 797 - 803
  • [40] Fatigue Life of Megawatt-Scale Composite Wind Turbine Blades with Shallow-Angled Laminates
    Hayat, K.
    Ha, S. K.
    Sultan, T.
    Ahmad, Z.
    MECHANICS OF COMPOSITE MATERIALS, 2019, 55 (04) : 483 - 494