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Prediction of ice accretion and anti-icing heating power on wind turbine blades using standard commercial software

机译:使用标准商业软件预测风力涡轮机叶片上的积冰和防冰加热功率

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An approach to numerically simulate ice accretion on 2D sections of a wind turbine blade is presented. The method uses standard commercial ANSYS-Fluent and Matlab tools. The Euler-Euler formulation is used to calculate the water impingement on the airfoil, and a UDF (Used Defined Function) has been devised to turn the airfoil's solid wall into a permeable boundary. Mayer's thermodynamic model is implemented in Matlab for computing ice thickness and for updating the airfoil contour. A journal file is executed to systematize the procedure: meshing, droplet trajectory calculation, thermodynamic model application for computing ice accretion, and the updating of airfoil contours. The proposed ice prediction strategy has been validated using iced airfoil contours obtained experimentally in the AMIL refrigerated wind tunnel (Anti-icing Materials International Laboratory). Finally, a numerical prediction method has been generated for anti-icing assessment, and its results compared with data obtained in this laboratory. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种数值模拟风力涡轮机叶片二维截面上积冰的方法。该方法使用标准的商用ANSYS-Fluent和Matlab工具。 Euler-Euler公式用于计算对翼型的水冲击,并且已经设计了UDF(使用的定义函数)将翼型的固体壁变成可渗透的边界。 Mayer的热力学模型在Matlab中实现,用于计算冰厚并更新机翼轮廓。执行日志文件以使该过程系统化:网格划分,液滴轨迹计算,用于计算积冰的热力学模型应用程序以及机翼轮廓的更新。拟议的冰预测策略已使用在AMIL冷藏风洞(防冰材料国际实验室)中通过实验获得的冰翼轮廓进行了验证。最后,已经产生了一种用于防冰评估的数值预测方法,并将其结果与该实验室获得的数据进行了比较。 (C)2016 Elsevier Ltd.保留所有权利。

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