Design optimization of composite wind turbine blades considering tortuous lightning strike and non-proportional multi-axial fatigue damage
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Zhenyu Liu | Jin Cheng | Weifei Hu | Jianrong Tan | Wentao Zhao | Yeqing Wang | Zhenyu Liu | Jin Cheng | Jianrong Tan | Weifei Hu | Yeqing Wang | Wentao Zhao
[1] Adrian Murphy,et al. Nonlinear numerical modelling of lightning strike effect on composite panels with temperature dependent material properties , 2014 .
[2] J. J. Yin,et al. Experimental and Numerical Simulation Analysis of Typical Carbon Woven Fabric/Epoxy Laminates Subjected to Lightning Strike , 2017, Applied Composite Materials.
[3] Olesya I. Zhupanska,et al. Estimation of the electric fields and dielectric breakdown in non‐conductive wind turbine blades subjected to a lightning stepped leader , 2017 .
[4] Joachim Holboell,et al. Lightning Damage to Wind Turbine Blades From Wind Farms in the U.S. , 2016, IEEE Transactions on Power Delivery.
[5] T. Sørensen,et al. Interaction between Electrical Discharges and Materials for Wind Turbine Blades - particularly related to lightning protection , 2007 .
[6] Kyung K. Choi,et al. Integrating variable wind load, aerodynamic, and structural analyses towards accurate fatigue life prediction in composite wind turbine blades , 2016 .
[7] F. Scarpa,et al. Design of a hybrid carbon fibre/carbon nanotube composite for enhanced lightning strike resistance , 2015 .
[8] Sankaran Mahadevan,et al. Probabilistic fatigue life prediction of multidirectional composite laminates , 2005 .
[9] Michael R. Motley,et al. Influence of uncertainties on the response and reliability of self-adaptive composite rotors , 2011 .
[10] Paweł Romanowicz,et al. Fatigue damage growth monitoring for composite structures with holes , 2018 .
[11] Knut O. Ronold,et al. Reliability-based fatigue design of wind-turbine rotor blades , 1999 .
[12] Yoshiyasu Hirano,et al. Coupled thermal–electrical analysis for carbon fiber/epoxy composites exposed to simulated lightning current , 2010 .
[13] S. Mahadevan,et al. A unified multiaxial fatigue damage model for isotropic and anisotropic materials , 2007 .
[14] Kyung K. Choi,et al. Reliability-based design optimization of wind turbine blades for fatigue life under dynamic wind load uncertainty , 2016, Structural and Multidisciplinary Optimization.
[15] V. Rakov,et al. The lightning striking distance—Revisited , 2007 .
[16] John Dalsgaard Sørensen,et al. Probabilistic Design of Wind Turbines , 2010 .
[17] M. Husnu Dirikolu,et al. The effect of stacking sequence of carbon epoxy composite laminates on pinned-joint strength , 2003 .
[18] P. Chowdhuri,et al. Parameters of lightning strokes: a review , 2005, IEEE Transactions on Power Delivery.
[19] Weifei Hu,et al. Investigation of the Effects of Receptors on the Lightning Strike Protection of Wind Turbine Blades , 2017, IEEE Transactions on Electromagnetic Compatibility.
[20] Olesya I. Zhupanska,et al. Lightning strike thermal damage model for glass fiber reinforced polymer matrix composites and its application to wind turbine blades , 2015 .
[21] C. Kong,et al. Structural investigation of composite wind turbine blade considering various load cases and fatigue life , 2005 .
[22] Vladimir A. Rakov,et al. Current Waveforms for Lightning Simulation , 2012, IEEE Transactions on Electromagnetic Compatibility.
[23] O. Zhupanska,et al. Modeling of thermal response and ablation in laminated glass fiber reinforced polymer matrix composites due to lightning strike , 2018 .
[24] Raimund Rolfes,et al. A comparison study on jacket substructures for offshore wind turbines based on optimization , 2018, Wind Energy Science.
[25] Luigi Acerbi,et al. Practical Bayesian Optimization for Model Fitting with Bayesian Adaptive Direct Search , 2017, NIPS.
[26] Yuxi Jia,et al. Damage analysis of carbon fiber composites exposed to combined lightning current components D and C , 2019, Composites Science And Technology.
[27] Jang-Ho Lee,et al. Development of fatigue life prediction method and effect of 10-minute mean wind speed distribution on fatigue life of small wind turbine composite blade , 2015 .
[28] Yuxi Jia,et al. Comparison between temperature and pyrolysis dependent models to evaluate the lightning strike damage of carbon fiber composite laminates , 2017 .
[29] C. Bisagni,et al. Fatigue life and damage tolerance of postbuckled composite stiffened structures with initial delamination , 2017 .
[30] Athanasios Kolios,et al. A review of reliability-based methods for risk analysis and their application in the offshore wind industry , 2018, Renewable and Sustainable Energy Reviews.
[31] Qi Dong,et al. Coupled electrical-thermal-pyrolytic analysis of carbon fiber/epoxy composites subjected to lightning strike , 2015 .