Numerical simulation of the performance of an asymmetrical airfoil under extreme weather conditions

I. Rotich, L. E. Kollár
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引用次数: 2

Abstract

This paper presents a numerical study of icing of a NACA2412 airfoil and the aerodynamic performance of the airfoil with ice accretion. The study analyzes the effects of liquid water content, accretion time and varying angles of attack (AoA) up to 200 on ice accretion and, consequently, on the aerodynamic coefficients of the airfoil. The free stream velocity and air temperature were kept constant in the simulations. Results revealed that the ratio of lift and drag coefficients was the highest after a short accretion time (i.e., about 20 minutes), but then it decreased significantly with accretion time. Ice accretion increased with time; its mass was the greatest at 100 of AoA. The results can be beneficial for designing blade shapes to optimize wind turbine performance during adverse weather conditions.
极端天气条件下非对称翼型性能的数值模拟
本文对NACA2412型翼型的结冰过程进行了数值研究,并分析了结冰后翼型的气动性能。该研究分析了液态水含量、吸积时间和高达200的变攻角(AoA)对冰的吸积的影响,从而影响了翼型的气动系数。在模拟中,自由气流速度和空气温度保持恒定。结果表明,在较短的吸积时间内(约20分钟),升力与阻力系数之比最高,但随着吸积时间的延长,升力与阻力系数之比显著降低。冰量随时间增加而增加;其质量在AoA的100处最大。研究结果有助于设计叶片形状,以优化风力涡轮机在恶劣天气条件下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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