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Anti-Icing Performance of Hydrophobic Silicone–Acrylate Resin Coatings on Wind Blades

机译:叶片上的疏水性有机硅丙烯酸酯树脂涂料的防冰性能

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The icing of wind blades poses a serious threat to the operation of wind turbines. The application of superhydrophobic coatings on wind blades can serve as a potential anti-icing method. This study presents the findings of simulations of the icing environment of wind blades coated with hydrophobic silicone–acrylate resin in an artificial climate chamber. Artificial icing tests were performed on NACA7715 wind blades with four different silicone–acrylate resin coatings and on uncoated wind blades, with test performed at five different wind speeds and three different angles of attack. Results show that wind blade surfaces with higher hydrophobicity yield better anti-icing performance, and that the ice mass of the wind blades decreases with increasing wind speeds and angles of attack. In addition, variations in ice mass, shape, and distribution on different wind blades indicate that increased hydrophobicity can help limit the areas that are subject to freezing. Hydrophobicity can affect the air cavities of the ice deposited on the wind blades, and surfaces with increased hydrophobicity can lead to lower ice mass and less ice adhesion. In brief, surfaces with higher hydrophobicity demonstrate better anti-icing performance and benefit from active de-icing.
机译:风力涡轮机的结冰严重威胁着风力涡轮机的运行。超疏水涂料在风叶片上的应用可作为一种潜在的防冰方法。这项研究提出了在人造气候室内模拟疏水性有机硅丙烯酸酯树脂涂层的风叶结冰环境的仿真结果。在具有四种不同有机硅丙烯酸酯树脂涂层的NACA7715风力叶片和未涂覆的风力叶片上进行了人工结冰测试,并以五种不同的风速和三种不同的迎角进行了测试。结果表明,具有较高疏水性的风轮叶片表面具有更好的防冰性能,并且风轮的冰块随着风速和迎角的增加而减小。此外,冰块的质量,形状和在不同风叶片上的分布的变化表明,增加的疏水性可以帮助限制易受冰冻的区域。疏水性会影响沉积在风叶片上的冰的气孔,疏水性增强的表面会导致冰量降低和冰粘附减少。简而言之,具有较高疏水性的表面表现出更好的防冰性能,并受益于主动除冰。

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