Experimental comparison of ultrasonic guide wave and thermal energy in de-icing method

Author:

Gaheen Osama A.,Asaad Wahba Marzouk Shery,Elsayed Ahmed M.ORCID,Abdelrahman M.A.ORCID,Elshimy Haitham,Aziz M.A.

Publisher

Elsevier BV

Reference26 articles.

1. Ruiliang Luo, Xu Chen, Jinyu Guo, “Design of deicing device for wind turbine blade based on microwave and ultrasonic wave” Journal of Physics: Conference Series, Volume 1748, The 2020 5th International Seminar on Computer Technology, Mechanical and Electrical Engineering (ISCME 2020) 30 October-1 November 2020, Shenyang, China. 10.1088/1742-6596/1748/6/062018.

2. Vladislav Daniliuk, Yuanming Xu, Ruobing Liu, Tianpeng He, Xi Wang, “Ultrasonic de-icing of wind turbine blades: Performance comparison of perspective transducers”, Volume 145, 2020, Pages 2005-2018, ISSN 0960-148 10.1016/j.renene.2019.07.102.

3. Vladislav Daniliuk, Evgeny Pamfilov, Aleksey Daniliuk, and Yuanming Xu, “Feasibility Study of Ultrasonic De-Icing Technique for Aircraft Wing Ice Protection”, International Conference on Aviamechanical Engineering and Transport (AviaENT 2019), DOI:10.2991/aviaent-19.2019.15.

4. Ramanathan, S. An Investigation on the Deicing of Helicopter Blades Using Shear Horizontal Guided Waves. Ph.D. Thesis, The Pennsylvania State University, University Park, PA, USA, 2004.

5. Zhu, Y. Structural Tailoring and Actuation Studies for Low Power Ultrasonic De-Icing of Aluminum and Composite Plates. Ph.D. Thesis, The Pennsylvania State University, University Park, PA, USA, 2010.

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