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风力机叶片表面覆冰影响因素分析

本站小编 Free考研考试/2024-01-16

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孔祥逸,张宝峰,于东玮,纪杨,韩雪阳,刘晨阳,张大勇.风力机叶片表面覆冰影响因素分析[J].,2023,63(1):52-60
风力机叶片表面覆冰影响因素分析
Analysis of factors influencing ice cover on blade surface of wind turbines
DOI:10.7511/dllgxb202301007
中文关键词:风力机叶片环境因素数值模拟覆冰
英文关键词:wind turbine bladesenvironmental factorsnumerical simulationice cover
基金项目:国家自然科学基金资助项目(52071055);高技术船舶科研项目(CBG2N21-2-2);中央高校基本科研业务费专项资金资助项目(DUT22QN237).
作者单位
孔祥逸,张宝峰,于东玮,纪杨,韩雪阳,刘晨阳,张大勇
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中文摘要:
我国低温高海拔地区的风能资源十分丰富,风力机在该环境下运行时会产生叶片表面覆冰现象,不仅降低风力机的发电效率,严重时会影响结构安全性能.采用Fluent与FENSAP-ICE相结合的方法对风力机叶片表面覆冰问题进行数值模拟分析,明确环境温度、来流速度、水滴等主要环境因素影响下叶片表面覆冰发展规律.结果表明,环境温度从-5 ℃降低到-20℃的过程中,覆冰质量随温度的降低呈线性增长,增长幅度约为0.74kg/℃;当温度继续降低时,覆冰质量增长幅度降低为0.228kg/℃.来流速度、空气中水含量(LWC)与水滴直径(MVD)的增加均使覆冰质量呈线性提高,覆冰质量增长幅度分别约为0.236kg·s/m、8.529kg·m3/g、0.512kg/μm.降低环境温度、增大来流速度和LWC会增加叶片覆冰面积,但增大MVD会使覆冰面积减小.
英文摘要:
Wind energy resources are abundant in the low temperature and high altitude areas of China, and the blade surface icing phenomenon will occur when wind turbines operate in this environment, which not only reduces the power generation efficiency of wind turbines, but also affects the structural safety performance in a serious way. By using the method combining Fluent and FENSAP-ICE, the numerical simulation is conducted to analyze the wind turbine blade surface icing problem and clarify the development law of blade surface icing under the influence of the main environmental factors such as ambient temperature, incoming flow velocity and water droplets. The results show that the ice cover mass grows linearly with the decrease of temperature during the decrease of ambient temperature from -5 ℃ to -20 ℃, and the growth rate is about 0.74 kg/℃; when the temperature continues to decrease, the growth rate of ice cover mass decreases to 0.228 kg/℃. The increase of incoming flow velocity, LWC (liquid water content) and MVD (median volume diameter) increases the ice cover mass linearly, and the ice cover mass increases by about 0.236 kg·s/m, 8.529 kg·m3/g and 0.512 kg/μm, respectively. Reducing ambient temperature, increasing incoming flow velocity and LWC increase the ice-covered area of blades, while increasing MVD reduces the area of ice cover.
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