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ULTRASONIC RADIATION ICE PROTECTION SYSTEM FOR WIND POWER PLANT BLADE

https://doi.org/10.15518/isjaee.2015.05.002

Abstract

This paper describes the ice protection system using the ultrasonic radiation for automatic removal of ice from the wind power plant blade surface. Operating components inside the blade are arranged for maximum reduction of energy consumption and increase of the system efficiency. The authors proposed the usage of devices on the base of renewable energy sources such as solar panels, for electric power supply of operating components ice protection  system. The paper also gives the examples of other ice protection alternatives for wind turbine blades in low temperature conditions, including publications of colleagues in this area. The authors compared similar systems and discussed the advantages of the proposed ultrasonic radiation based system; and presented a method for the system component calculation and partially the functional modules showing the simplicity of the discussed system both in montage and practical usage.

About the Authors

E. V. Solomin
South-Urals State University
Russian Federation
Dr. Sc, Associate Professor of the South Ural State University


V. V. Dolgosheev
South-Urals State University
Russian Federation
Student Bachelor of South Ural State  University


I. A. Vasiliev
South-Urals State University
Russian Federation
Student Bachelor of South Ural State  University


References

1. Solomin E.V. Vetroènergetičeskaâ èkonomika. In-ternational Scientific Journal “Alʹternativnaâ ènergeti-ka i èkologiâ” (ISJAEE), 2010, no. 2, pp. 28–30 (in Russ.).

2. Solomin E.V. Joint scientific research of Russian and German scientists in renewable energy. International Scientific Journal for Alternative energy and ecology (ISJAEE), 2011, no. 10, pp. 82–88 (in Eng.).

3. Solomin E.V. Perspektivy ispolʹzovaniâ malyh vetroènergetičeskih ustanovok v agropromyšlennom komplekse. Mehanizaciâ i èlektrifikaciâ selʹskogo hozâjstva, 2011, issue 7, pp. 12–15 (in Russ.).

4. Polina Teneibulei, Mark - Fransua Khiks. Anti-icing/de-icing system and method and plane using the same. Pat. CN 101525053 A, Chine, G01B17/06. no. 200910126381; publ. 09.09.2009 (in Eng.).

5. World Wind Energy Association / Japanese re-gions transition to 100% renewable energy. Available at: http://www.wwindea.org/home/index.php (in Eng.).

6. Kirpichnikova I.M., Martʹyanov A.S., Solomin E.V. Preobrazovanie ènergii v vetroènergetičeskih ustanovkah. International Scientific Journal “Alʹternativnaâ ènergetika i èkologiâ” (ISJAEE), 2010, no. 1, pp. 93–97 (in Russ.).


Review

For citations:


Solomin E.V., Dolgosheev V.V., Vasiliev I.A. ULTRASONIC RADIATION ICE PROTECTION SYSTEM FOR WIND POWER PLANT BLADE. Alternative Energy and Ecology (ISJAEE). 2015;(5):19-23. (In Russ.) https://doi.org/10.15518/isjaee.2015.05.002

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ISSN 1608-8298 (Print)