A Review on Failure Modes of Wind Turbine Components

被引:42
作者
Olabi, Abdul Ghani [1 ,2 ]
Wilberforce, Tabbi [2 ]
Elsaid, Khaled [3 ]
Sayed, Enas Taha [4 ,5 ]
Salameh, Tareq [1 ]
Abdelkareem, Mohammad Ali [1 ,4 ,5 ]
Baroutaji, Ahmad [6 ]
机构
[1] Univ Sharjah, Dept Sustainable & Renewable Energy Engn, POB 27272, Sharjah, U Arab Emirates
[2] Aston Univ, Mech Engn & Design, Sch Engn & Appl Sci, Birmingham B4 7ET, W Midlands, England
[3] Texas A&M Univ Qatar, Chem Engn Program, Doha 23874, Qatar
[4] Univ Sharjah, Ctr Adv Mat Res, POB 27272, Sharjah, U Arab Emirates
[5] Minia Univ, Dept Chem Engn, Fac Engn, Al Minya 61519, Egypt
[6] Univ Wolverhampton, Dept Mech Engn, Wulfruna St, Wolverhampton WV1 1LY, England
关键词
composite material; turbine blade; failure mode; cost analysis; LOW-VELOCITY IMPACT; FIBER-REINFORCED COMPOSITES; DAMAGE PREDICTION; EXPERIENCE CURVES; POWER-GENERATION; SEISMIC ANALYSIS; FATIGUE DAMAGE; POST-MORTEM; BLADE; POSTMORTEM;
D O I
10.3390/en14175241
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
To meet the increasing energy demand, renewable energy is considered the best option. Its patronage is being encouraged by both the research and industrial community. The main driving force for most renewable systems is solar energy. It is abundant and pollutant free compared to fossil products. Wind energy is also considered an abundant medium of energy generation and often goes hand in hand with solar energy. The last few decades have seen a sudden surge in wind energy compared to solar energy due to most wind energy systems being cost effective compared to solar energy. Wind turbines are often categorised as large or small depending on their application and energy generation output. Sustainable materials for construction of different parts of wind turbines are being encouraged to lower the cost of the system. The turbine blades and generators perform crucial roles in the overall operation of the turbines; hence, their material composition is very critical. Today, most turbine blades are made up of natural fiber-reinforced polymer (NFRP) as well as glass fiber-reinforced polymer (GFRP). Others are also made from wood and some metallic materials. Each of the materials introduced has specific characteristics that affect the system's efficiency. This investigation explores the influence of these materials on turbine efficiency. Observations have shown that composites reinforced with nanomaterials have excellent mechanical characteristics. Carbon nanotubes have unique characteristics that may make them valuable in wind turbine blades in the future. It is possible to strengthen carbon nanotubes with various kinds of resins to get a variety of different characteristics. Similarly, the end-of-life treatment methods for composite materials is also presented.
引用
收藏
页数:44
相关论文
共 223 条
[1]  
Aakre D., 2009, WIND TURBINE CONSIDE
[2]   Impact of uncertainty in airfoil characteristics on wind turbine extreme loads [J].
Abdallah, I. ;
Natarajan, A. ;
Sorensen, J. D. .
RENEWABLE ENERGY, 2015, 75 :283-300
[3]   Fuel cells for carbon capture applications [J].
Abdelkareem, Mohammad Ali ;
Lootah, Maryam Abdullah ;
Sayed, Enas Taha ;
Wilberforce, Tabbi ;
Alawadhi, Hussain ;
Yousef, Bashria A. A. ;
Olabi, A. G. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2021, 769 (769)
[4]   Recent progress in the use of renewable energy sources to power water desalination plants [J].
Abdelkareem, Mohammad Ali ;
Assad, M. El Haj ;
Sayed, Enas Taha ;
Soudan, Bassel .
DESALINATION, 2018, 435 :97-113
[5]   Kenaf fiber reinforced composites: A review [J].
Akil, H. M. ;
Omar, M. F. ;
Mazuki, A. A. M. ;
Safiee, S. ;
Ishak, Z. A. M. ;
Abu Bakar, A. .
MATERIALS & DESIGN, 2011, 32 (8-9) :4107-4121
[6]   The ultra-low Reynolds number airfoil wake [J].
Alam, Md. Mahbub ;
Zhou, Y. ;
Yang, H. X. ;
Guo, H. ;
Mi, J. .
EXPERIMENTS IN FLUIDS, 2010, 48 (01) :81-103
[7]   The effect of temperature and strain rate on the impact performance of recyclable all-polypropylene composites [J].
Alcock, B. ;
Cabrera, N. O. ;
Barkoula, N. -M. ;
Wang, Z. ;
Peijs, T. .
COMPOSITES PART B-ENGINEERING, 2008, 39 (03) :537-547
[8]   Levelised cost of energy - A theoretical justification and critical assessment [J].
Aldersey-Williams, J. ;
Rubert, T. .
ENERGY POLICY, 2019, 124 :169-179
[9]  
Alhems, 2018, P ADV CIVIL ENV MAT
[10]  
Amati N, 2001, IEEE ASME INT C ADV, P750, DOI 10.1109/AIM.2001.936760