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首页> 外文期刊>Agricultural and Forest Meteorology >Thermocouple frequency response compensation leads to convergence of the surface renewal alpha calibration.
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Thermocouple frequency response compensation leads to convergence of the surface renewal alpha calibration.

机译:热电偶频率响应补偿导致表面更新alpha校准的收敛。

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摘要

Ramp-like shapes in the turbulent scalar trace are the signature of coherent structures, and their characteristics (i.e., amplitude and duration) are resolved via a structure-function model for use in the surface renewal flux calculation. The potential for surface renewal to provide inexpensive sensible heat flux measurements has not been fully realized because this method has required calibration against eddy covariance or other more expensive flux measurement techniques. The calibration factor alpha is ideally 0.5, but a broad range of values have been reported in the surface renewal literature. Although it has been hypothesized that the sensor size, and hence sensor frequency response characteristics, influence alpha, no effort has been previously made to compensate the thermocouple signal in surface renewal measurements. We evaluate methods for compensating the frequency response of a thermocouple in the time domain and the frequency domain, and we present a novel method for compensation in the lag domain (i.e., compensating the structure function directly). We evaluated the compensation procedure as it affects the resolution of ramp characteristics at both the smallest and the second smallest scales of ramp-like turbulent shapes. The surface renewal sensible heat flux estimates from the compensated robust thermocouples (76 micro m diameter wire) agree well with the estimates from the compensated fragile thermocouples (13 micro m diameter). Using both the data collected for the present experiment and a meta-analysis of data in the surface renewal literature, we correct the surface renewal estimates for thermocouple frequency response characteristics to obtain alpha calibrations that converge to close to the predicted value of 0.5. We conclude that the frequency response characteristics of the thermocouple are the prevailing influence on the alpha calibrations reported in the literature.
机译:湍流标量迹线中的斜坡状形状是相干结构的特征,它们的特征(即振幅和持续时间)通过结构函数模型解析,用于表面更新通量计算。由于需要对该方法进行涡流协方差校正或其他更昂贵的流量测量技术,因此尚未完全实现表面更新以提供廉价的显热流量测量的潜力。理想的校准系数α为0.5,但是在表面更新文献中已经报道了很多数值。尽管已经假设传感器的大小以及传感器的频率响应特性会影响alpha,但以前并未做出任何努力来补偿表面更新测量中的热电偶信号。我们评估了在时域和频域中补偿热电偶频率响应的方法,并提出了一种在滞后域中进行补偿的新方法(即直接补偿结构函数)。我们评估了补偿程序,因为它会在最小和第二最小比例的斜坡状湍流形状上影响斜坡特性的分辨率。补偿的坚固热电偶(直径为76微米的金属丝)的表面更新显热通量估算值与补偿的易碎热电偶(直径为13微米)的估算值非常吻合。使用针对当前实验收集的数据和对表面更新文献中的数据进行荟萃分析,我们校正了热电偶频率响应特性的表面更新估计,以获得收敛至接近预测值0.5的alpha校准值。我们得出的结论是,热电偶的频率响应特性是对文献中报道的alpha校准的主要影响。

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