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Correction of sonic anemometer angle of attack errors

机译:修正风速仪的迎角误差

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摘要

An improved method of correcting for the angle of attack error resulting from the imperfect (co)sine response of ultrasonic anemometers is proposed. The angle of attack, which was calculated as the arctangent of observed wind vectors, contains the angle of attack errors in the vectors themselves, and hence this angle was ‘false’. The ‘true’ angle of attack should be calculated from the corrected or ‘true’ wind vectors. In the improved method, the ‘true’ angle of attack is derived by solving a nonlinear equation which connects the ‘false’ angle of attack to the ‘true’ one. In applying this method to the case of R2- and R3-type Solent ultrasonic anemometers, the fit of the function for the sine responses to wind tunnel data was improved, and the cosine response function was also improved to consider the effect of the difference of the vertical positions of the transducers. The nonlinear equation was solved using the Steffensen method; robustly and adequately fast for practical use in calculating eddy fluxes. The accuracy of the correction method is improved over a previous one, especially at large angles of attack. Applying our correction method to field data from two forests and one peat bog, the eddy fluxes of sensible heat, latent heat and CO2 were increased and the energy balance closure rates were improved. These results indicate that a large portion of energy imbalance can be accounted for by the ultrasonic anemometer angle of attack dependent errors.
机译:提出了一种改进的校正风速误差的方法,该误差是由超声风速计的不完美(余弦)响应引起的。迎角(计算为观察到的风向矢量的反正切值)包含迎风误差在矢量本身中,因此该角度为“假”。 “真实”迎角应根据校正后的“真实”风向矢量来计算。在改进的方法中,“真”攻角是通过求解将“假”攻角与“真”攻角联系起来的非线性方程而得出的。将这种方法应用于R2-型和R3型Solent超声波风速计的情况下,改进了正弦响应函数对风洞数据的拟合,并且还考虑了不同的影响,改进了余弦响应函数。换能器的垂直位置。使用Steffensen方法求解非线性方程。坚固且足够快,可用于计算涡流。校正方法的准确性比以前的方法有所提高,尤其是在较大的迎角情况下。将我们的校正方法应用于来自两个森林和一个泥炭沼泽的野外数据,显热,潜热和CO2的涡流增加,能量平衡的闭合率提高。这些结果表明,大部分的能量失衡可以由超声风速仪的迎角误差引起。

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