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Reducing Ice Adhesion by Using Nanostructured Plastic Polymer Coatings for De-Icing of Wind Turbine Blades
Journal of Engineering Thermophysics ( IF 2.4 ) Pub Date : 2023-11-08 , DOI: 10.1134/s181023282303013x
V. G. Meledin , S. V. Dvoynishnikov , K. I. Stepanov , D. G. Mukhin , M. R. Gordienko , S. V. Kakaulin , V. E. Ledovsky , K. S. Zubanov , V. O. Zuev , N. I. Yavorsky , G. V. Bakakin , I. K. Kabardin

Abstract

The results of studies on reducing ice adhesion via change in the original shape of the blade profile and its surface by means of microstructuring of different geometries are summarized. The influence of the height of nanograss on the intensity of ice formation was estimated for coatings investigated under icing conditions on a climatic aerodynamic stand for study of icing on model blades of wind turbines. The prospects and limitations of using polymeric plastic coatings for anti-icing systems for wind turbine blades are shown.



中文翻译:

使用纳米结构塑料聚合物涂层减少冰粘附,为风力涡轮机叶片除冰

摘要

总结了通过不同几何形状的微结构改变叶片轮廓及其表面的原始形状来减少冰粘附的研究结果。评估了在气候空气动力学台上结冰条件下研究的涂层的纳米草高度对结冰强度的影响,以研究风力涡轮机模型叶片上的结冰。展示了使用聚合物塑料涂层用于风力涡轮机叶片防冰系统的前景和局限性。

更新日期:2023-11-09
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