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Relative humidity effects on water vapour fluxes measured with closed-path eddy-covariance systems with short sampling lines (vol 165, pg 53, 2012)

机译:相对湿度对水气通量的影响,采用短采样线的闭合路径涡旋协方差系统进行测量(第165卷,2012年第53页)

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摘要

It has been formerly recognised that increasing relative humidity in the sampling line of closed-path eddy-covariance systems leads to increasing attenuation of water vapour turbulent fluctuations, resulting in strong latent heat flux losses. This occurrence has been analyzed for very long (50 m) and long (7 m) sampling lines. To date, only a few analytical or in situ analyses have been proposed to quantify and correct such effects, among which the comprehensive method by Ibrom et al. (2007) was proved effective for the very long sampling line of a forest eddy-covariance setup.Here we analyze data from eddy-covariance systems featuring short (4 m) and very short (1 m) sampling lines running at the same clover field and show that relative humidity effects persist also for these setups, and should not be neglected. Starting from the work of Ibrom and co-workers, we propose a mixed method, a composite of two existing approaches, for correcting eddy-covariance fluxes. By means of a comparison with parallel open-path measurements, we show that the mixed method leads to an improved estimation of latent heat fluxes, with respect to the method described by Ibrom et al. (2007). The quantification and correction method proposed here is deemed applicable to closed-path systems featuring a broad range of sampling lines, and indeed applicable also to passive gases as a special case. The methods described in this paper are incorporated, as processing options, in the free and open-source eddy-covariance software packages ECO2S and EddyPro.
机译:以前已经认识到,封闭路径涡流-协方差系统采样线中相对湿度的增加会导致水蒸气湍流波动的衰减增加,从而导致强大的潜热通量损失。已经对很长(50 m)和很长(7 m)的采样线进行了分析。迄今为止,仅提出了一些分析或原位分析来量化和校正这种影响,其中包括Ibrom等人的综合方法。 (2007)被证明对森林涡流-协方差设置的非常长的采样线有效。在这里,我们分析了在同一三叶草田运行的短(4 m)和非常短(1 m)采样线的涡旋-协方差系统的数据并表明相对湿度影响在这些设置下也持续存在,因此不应忽略。从Ibrom及其同事的工作出发,我们提出了一种混合方法,该方法是两种现有方法的组合,用于校正涡动-协方差通量。通过与并行开放路径测量值的比较,我们表明,与Ibrom等人描述的方法相比,混合方法可以改善对潜热通量的估计。 (2007)。此处提出的量化和校正方法被认为适用于具有广泛采样线范围的闭路系统,并且在特殊情况下,实际上也适用于无源气体。本文描述的方法作为处理选项并入了免费和开放源代码的eddy-covariance软件包ECO2S和EddyPro。

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