Operational Load Estimation of a Smart Wind Turbine Rotor Blade

被引:1
|
作者
White, Jonathan R. [1 ]
Adams, Douglas E. [1 ]
Rumsey, Mark A. [2 ]
机构
[1] Purdue Univ, 1500 Kepner Dr, Lafayette, IN 47905 USA
[2] Sandia Natl Labs, Albuquerque, NM 87185 USA
关键词
Wind Turbine; Smart Structure; Sensor Placement Optimization; Structural Health Monitoring; Online Monitoring; Modal Filtering;
D O I
10.1117/12.8158020
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Rising energy prices and carbon emission standards are driving a fundamental shift from fossil fuels to alternative sources of energy such as biofuel, solar, wind, clean coal and nuclear. In 2008, the U. S. installed 8,358 MW of new wind capacity increasing the total installed wind power by 50% to 25,170 MW. A key technology to improve the efficiency of wind turbines is smart rotor blades that can monitor the physical loads being applied by the wind and then adapt the airfoil for increased energy capture. For extreme wind and gust events, the airfoil could be changed to reduce the loads to prevent excessive fatigue or catastrophic failure. Knowledge of the actual loading to the turbine is also useful for maintenance planning and design improvements. In this work, an array of uniaxial and triaxial accelerometers was integrally manufactured into a 9m smart rotor blade. DC type accelerometers were utilized in order to estimate the loading and deflection from both quasi-steady-state and dynamic events. A method is presented that designs an estimator of the rotor blade static deflection and loading and then optimizes the placement of the sensor(s). Example results show that the method can identify the optimal location for the sensor for both simple example cases and realistic complex loading. The optimal location of a single sensor shifts towards the tip as the curvature of the blade deflection increases with increasingly complex wind loading. The framework developed is practical for the expansion of sensor optimization in more complex blade models and for higher numbers of sensors.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Wind turbine rotor blade materials: Estimating service lives
    Nijssen, R. P. L.
    van Wingerde, A. M.
    van Delft, D. R. V.
    SAMPE JOURNAL, 2007, 43 (02) : 7 - 15
  • [32] Material selection for rotor blade of vertical axis wind turbine
    Gatlewar, Abhishekh R.
    Mandavgade, Nitin K.
    Kanojiya, Mahesh T.
    Kalbande, Vijay N.
    MATERIALS TODAY-PROCEEDINGS, 2021, 46 : 8489 - 8493
  • [33] Proactive control of wind turbine with blade load constraints
    Stotsky, Alexander
    Egardt, Bo
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART I-JOURNAL OF SYSTEMS AND CONTROL ENGINEERING, 2012, 226 (I7) : 985 - 993
  • [34] Measurement and analysis of wind turbine blade mechanical load
    Liu, Xiaofeng
    Bo, Lin
    Wang, Li
    Peng, Yongjing
    JOURNAL OF RENEWABLE AND SUSTAINABLE ENERGY, 2015, 7 (01)
  • [35] ON THE DISTRIBUTION OF AERODYNAMIC LOAD AND STRESS ON WIND TURBINE BLADE
    My Ha Dao
    Quang Tuyen Le
    Zhao, Xiang
    PROCEEDINGS OF ASME 2023 42ND INTERNATIONAL CONFERENCE ON OCEAN, OFFSHORE & ARCTIC ENGINEERING, OMAE2023, VOL 8, 2023,
  • [37] OPERATIONAL TESTS OF A DUAL-ROTOR MINI WIND TURBINE
    Romanski, Leszek
    Bieniek, Jerzy
    Komarnicki, Piotr
    Debowski, Marcin
    Detyna, Jerzy
    EKSPLOATACJA I NIEZAWODNOSC-MAINTENANCE AND RELIABILITY, 2016, 18 (02): : 201 - 209
  • [38] Load response of a two-rotor floating wind turbine undergoing blade-pitch system faults
    El Beshbichi, Omar
    Xing, Yihan
    Chen Ong, Muk
    WIND ENERGY, 2023, 26 (09) : 946 - 967
  • [39] POWER PERFOMANCE TESTS ON A DIFFERENT WIND TURBINE ROTOR BLADE DESIGN
    Amano, Ryo
    Avdeev, Ilya
    Malloy, Ryan
    Shams, Mir Zunaid
    ASME POWER CONFERENCE, 2010, 2010, : 617 - 627
  • [40] Architecting a digital twin for wind turbine rotor blade aerodynamic monitoring
    Institute of Energy Technology, Eastern Switzerland University of Applied Sciences, Rapperswil, Switzerland
    不详
    不详
    Front. Energy Res., 2024,