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首页> 外文期刊>Boundary-Layer Meteorology >Attenuation Correction Procedures for Water Vapour Fluxes from Closed-Path Eddy-Covariance Systems
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Attenuation Correction Procedures for Water Vapour Fluxes from Closed-Path Eddy-Covariance Systems

机译:封闭路径涡流-协方差系统中水蒸气通量的衰减校正程序

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摘要

Evapotranspiration is a source of water vapour to the atmosphere, and as a crucial indicator of landscape behaviour its accurate measurement has widespread implications. Here we investigate errors that are prevalent and systematic in the closed-path eddy-covariance measurement of latent heat flux: the attenuation of fluxes through dampened cospectral power at high frequencies. This process is especially pronounced during periods of high relative humidity through the adsorption and desorption of water vapour along the tube walls. These effects are additionally amplified during lower air temperature conditions. Here, we quantify the underestimation of evapotranspiration by a closed-path system by comparing its flux estimate to simultaneous and adjacent measurements from an open-path sensor. We apply models relating flux loss to relative humidity itself, to the lag time of the cross-correlation peak between the water vapour and vertical wind velocity signals, and to models of cospectral attenuation relative to the cospectral power of simultaneous sensible heat-flux measurements. We find that including the role of temperature in modifying the attenuation–humidity relationship is essential for unbiased flux correction, and that physically based cospectral attenuation methods are effective characterizers of closed-path instrument signal loss relative to the unattenuated flux value.
机译:蒸散作用是大气中水蒸气的来源,作为景观行为的重要指标,其精确测量具有广泛的意义。在这里,我们研究了潜热通量的闭合路径涡旋协方差测量中普遍存在的系统误差:通量在较高频率下通过衰减共谱功率的衰减。通过沿管壁吸收和解吸水蒸气,在相对湿度较高时,该过程尤为明显。这些影响在较低的空气温度条件下会进一步放大。在这里,我们通过比较其通量估计值与开放路径传感器的同时和邻近测量值,来量化闭路系统的蒸散量低估。我们将通量损失与相对湿度本身,水蒸气和垂直风速信号之间的互相关峰的滞后时间,以及相对于同时进行感热通量测量的共谱功率的共谱衰减模型相关联。我们发现,包括温度在修改衰减-湿度关系中的作用对于无偏通量校正是必不可少的,并且基于物理的共谱衰减方法是闭路仪器信号损耗相对于未衰减通量值的有效表征。

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