Fatigue Reliability Analysis of Wind Turbine Cast Components

被引:5
作者
Rafsanjani, Hesam Mirzaei [1 ]
Sorensen, John Dalsgaard [1 ]
Faester, Soren [2 ]
Sturlason, Asger [3 ]
机构
[1] Aalborg Univ, Dept Civil Engn, DK-9220 Aalborg O, Denmark
[2] Tech Univ Denmark, Dept Wind Energy, DK-4000 Roskilde, Denmark
[3] Vestas Technol & Serv Solut, DK-8200 Aarhus, Denmark
来源
ENERGIES | 2017年 / 10卷 / 04期
关键词
reliability; casting; fatigue; analysis of covariance (ANCOVA); wind turbines; DESIGN;
D O I
10.3390/en10040466
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The fatigue life of wind turbine cast components, such as the main shaft in a drivetrain, is generally determined by defects from the casting process. These defects may reduce the fatigue life and they are generally distributed randomly in components. The foundries, cutting facilities and test facilities can affect the verification of properties by testing. Hence, it is important to have a tool to identify which foundry, cutting and/or test facility produces components which, based on the relevant uncertainties, have the largest expected fatigue life or, alternatively, have the largest reliability to be used for decision-making if additional cost considerations are added. In this paper, a statistical approach is presented based on statistical hypothesis testing and analysis of covariance (ANCOVA) which can be applied to compare different groups (manufacturers, suppliers, test facilities, etc.) and to quantify the relevant uncertainties using available fatigue tests. Illustrative results are presented as obtained by statistical analysis of a large set of fatigue data for casted test components typically used for wind turbines. Furthermore, the SN curves (fatigue life curves based on applied stress) for fatigue assessment are estimated based on the statistical analyses and by introduction of physical, model and statistical uncertainties used for the illustration of reliability assessment.
引用
收藏
页数:14
相关论文
共 50 条
  • [1] Fatigue reliability analysis of wind turbine tower under random wind load
    Fu, Bing
    Zhao, Jianbin
    Li, Bingqing
    Yao, Jing
    Teifouet, Armand Robinson Mouafo
    Sun, Liyun
    Wang, Zhenyu
    STRUCTURAL SAFETY, 2020, 87
  • [2] Reliability & Availability of Wind Turbine Electrical & Electronic Components
    Tavner, Peter
    Faulstich, S.
    Hahn, B.
    van Bussel, G. J. W.
    EPE JOURNAL, 2010, 20 (04) : 45 - 50
  • [3] Structural reliability analysis of contact fatigue design of gears in wind turbine drivetrains
    Dong, Wenbin
    Nejad, Amir Rasekhi
    Moan, Torgeir
    Gao, Zhen
    JOURNAL OF LOSS PREVENTION IN THE PROCESS INDUSTRIES, 2020, 65
  • [4] HIGH SPEED BEARING FATIGUE LIFE AND RELIABILITY ANALYSIS OF WIND TURBINE GEARBOX UNDER RANDOM LOAD
    Song L.
    Cui Q.
    Zhou J.
    Jin P.
    Qi L.
    Wen J.
    Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2023, 44 (08): : 437 - 444
  • [5] Uncertainty Modeling and Fatigue Reliability Assessment of Offshore Wind Turbine Concrete Structures
    Velarde, Joey
    Kramhoft, Claus
    Mankar, Amol
    Sorensen, John Dalsgaard
    INTERNATIONAL JOURNAL OF OFFSHORE AND POLAR ENGINEERING, 2019, 29 (02) : 165 - 171
  • [6] Reliability-based fatigue design of wind-turbine rotor blades
    Ronold, KO
    Wedel-Heinen, J
    Christensen, CJ
    ENGINEERING STRUCTURES, 1999, 21 (12) : 1101 - 1114
  • [7] Reliability Analysis of Wind Turbine Towers
    Hsu, Yao
    Wu, Wen-Fang
    Chang, Yung-Chang
    37TH NATIONAL CONFERENCE ON THEORETICAL AND APPLIED MECHANICS (37TH NCTAM 2013) & THE 1ST INTERNATIONAL CONFERENCE ON MECHANICS (1ST ICM), 2014, 79 : 218 - 224
  • [8] Analysis of the design of experiments of offshore wind turbine fatigue reliability design with Kriging surfaces
    Teixeira, Rui
    O'Connor, Alan
    Nogal, Maria
    Krishnan, Nandakumar
    Nichols, James
    2ND INTERNATIONAL CONFERENCE ON STRUCTURAL INTEGRITY, ICSI 2017, 2017, 5 : 951 - 958
  • [9] Aggregate reliability analysis of wind turbine generators
    Rezamand, Milad
    Carriveau, Rupp
    Ting, David S. -K.
    Davison, Matt
    Davis, Justin Jeffrey
    IET RENEWABLE POWER GENERATION, 2019, 13 (11) : 1902 - 1910
  • [10] Fatigue reliability of structural components
    Jakubczak, H
    Sobczykiewicz, W
    Glinka, G
    INTERNATIONAL JOURNAL OF MATERIALS & PRODUCT TECHNOLOGY, 2006, 25 (1-3) : 64 - 83