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Cup anemometer response to the wind turbulence - measurement of the horizontal wind variance

机译:杯风速计对风湍流的响应-测量水平风的方差

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This paper presents some dynamic characteristics of an opto-electronic cup anemometer model in relation to its response to the wind turbulence. It is based on experimental data of the natural wind turbulence measured both by an ultrasonic anemometer and two samples of the mentioned cup anemometer. The distance constants of the latter devices measured in a wind tunnel are in good agreement with those determined by the spectral analysis method proposed in this study. In addition, the study shows that the linear compensation of the cup anemometer response, beyond the cutoff frequency, is limited to a given frequency, characteristic of the device. Beyond this frequency, the compensation effectiveness relies mainly on the wind characteristics, particularly the direction variability and the horizontal turbulence intensity. Finally, this study demonstrates the potential of fast cup anemometers to measure some turbulence parameters (like wind variance) with errors of the magnitude as those deriving from the mean speed measurements. This result proves that fast cup anemometers can be used to assess some turbulence parameters, especially for long-term measurements in severe climate conditions (icing, snowing or sandy storm weathers).
机译:本文介绍了光电杯风速计模型相对于其对风湍流的响应的动态特性。它是基于自然风湍流的实验数据,该自然风湍流是通过超声波风速计和上述杯型风速计的两个样本测得的。在风洞中测量的后一种装置的距离常数与通过本研究提出的频谱分析方法确定的距离常数非常吻合。此外,研究表明,杯风速计响应的线性补偿(超出截止频率)仅限于设备的给定频率,特性。超过此频率,补偿效果主要取决于风的特性,尤其是方向变化性和水平湍流强度。最后,这项研究证明了快速风速计可以测量某些湍流参数(如风速变化),其幅度误差与从平均速度测量得出的误差相当。该结果证明,快速杯风速计可用于评估某些湍流参数,特别是在恶劣气候条件(结冰,下雪或沙尘暴天气)下进行长期测量时。

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