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Rational Calibration Of Four Iec 61400-1 Extreme External Conditions

机译:四个Iec 61400-1极端外部条件的合理校准

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Based on a set of asymptotic statistical models on closed form this paper presents a rational and consistent calibration of four extreme external conditions defined in the International Electrotechnical Commission (IEC) 61400-1 standard: extreme operating gust, extreme wind shear, extreme coherent gust with direction change and extreme wind direction change. These four extreme external conditions are used in the definition of six of the IEC 61400-1 ultimate load cases. The statistical models are based on simple and easily accessible mean wind speed and turbulence characteristics of the atmospheric boundary layer. Using the wind climate characteristics prescribed in the IEC 61400-1 standard as input to the set of statistical models ensures consistency between the specified wind climate and the proposed extreme gust magnitudes. Differences and equalities between the present IEC specifications and proposed specifications of the magnitudes of the extreme external wind conditions are highlighted and discussed using an illustrative example based on two selected terrain types.
机译:基于一组封闭形式的渐近统计模型,本文提出了对国际电工委员会(IEC)61400-1标准中定义的四个极端外部条件的合理一致的校准:极端工作阵风,极端风切变,极端相干阵风方向变化和极端风向变化。这四个极端外部条件用于定义IEC 61400-1的六个极限负载情况。统计模型基于大气边界层的简单且容易获得的平均风速和湍流特征。使用IEC 61400-1标准中规定的风气候特征作为统计模型集的输入,可以确保指定的风气候与建议的极端阵风强度之间保持一致。使用基于两个所选地形类型的说明性示例,突出显示并讨论了当前IEC规范与拟议的极端外部风况的规范之间的差异和相等性。

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