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Revisiting wind speed measurements using actively heated fiber optics: a wind tunnel study

机译:使用积极加热的光纤重新探测风速测量:风隧道研究

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Near-surface wind speed is typically only measured by point observations. The actively heated fiber-optic (AHFO) technique, however, has the potential to provide high-resolution distributed observations of wind speeds, allowing for better spatial characterization of fine-scale processes. Before AHFO can be widely used, its performance needs to be tested in a range of settings. In this work, experimental results on this novel observational wind-probing technique are presented. We utilized a controlled wind tunnel setup to assess both the accuracy and the precision of AHFO under a range of operational conditions (wind speed, angles of attack and temperature difference). The technique allows for wind speed characterization with a spatial resolution of 0.3m on a 1s timescale. The flow in the wind tunnel was varied in a controlled manner such that the mean wind ranged between 1 and 17m?s?1. The AHFO measurements are compared to sonic anemometer measurements and show a high coefficient of determination (0.92–0.96) for all individual angles, after correcting the AHFO measurements for the angle of attack. Both the precision and accuracy of the AHFO measurements were also greater than 95% for all conditions. We conclude that AHFO has the potential to measure wind speed, and we present a method to help choose the heating settings of AHFO. AHFO allows for the characterization of spatially varying fields of mean wind. In the future, the technique could potentially be combined with conventional distributed temperature sensing (DTS) for sensible heat flux estimation in micrometeorological and hydrological applications.
机译:近表面风速通常仅通过点观察测量。然而,主动加热的光纤(AHFO)技术具有提供风速的高分辨率分布式观察的可能性,允许更好地表征微尺度过程。在AHFO可广泛使用之前,需要在一系列设置中进行测试。在这项工作中,提出了这种新型观测风探测技术的实验结果。我们利用受控的风洞设置来评估AHFO在一系列操作条件下的准确性和精度(风速,攻击角度和温差)。该技术允许风速表征,在1S时间内的空间分辨率为0.3m。风隧道中的流动以受控的方式变化,使得平均风在1至17m之间的范围内。将AHFO测量与Sonic Anemomer测量进行比较,并且在校正AHFO测量的攻角后,所有单独的角度都显示出高度的确定系数(0.92-0.96)。所有条件的AHFO测量的精度和准确性也大于95%。我们得出结论,AHFO有可能测量风速,我们提出了一种帮助选择AHFO的加热环境的方法。 AHFO允许表征平均风的空间变化的田地。在未来,该技术可能与传统的分布式温度感测(DTS)相结合,以进行微观气象和水文应用中的显热通量估计。
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