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Using Scintillometry to Estimate Sensible Heat Fluxes over Water: First Insights

机译:使用闪烁法估算水上的感热通量:第一见解

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An extra large aperture scintillometer (XLAS) was used over several months across the Thau Lagoon (South of France) to retrieve one-wavelength scintillation and, thence, sensible heat flux. We present the experiment with the XLAS, an eddy-covariance station and meteorological stations measuring on or near the Thau Lagoon. Changes implemented to adapt the scintillometry processing schemes to the above water conditions are presented together with a full error budget, including sensitivity tests to the relevant parameters of the scintillometer processing scheme. The XLAS error budget amounts to 16% (systematic part) +/- 50% (random part). Sensible heat fluxes obtained using the XLAS under unstable atmospheric conditions are then compared to eddy-covariance estimates used as a reference. The scintillometry technique proved to perform satisfactorily in such a watery environment. Some discrepancies observed between the XLAS and eddy-covariance measurements were investigated according to the lagoon fraction of the source area, to discriminate whether they were related to deviations from the Monin-Obukhov similarity theory or to different atmospheric conditions at the respective instrument locations. Local atmospheric conditions agreed well with the Monin-Obukhov similarity theory, especially measurements with source areas largely composed of the lagoon surface. Retaining only the measurements with almost only the lagoon surface in the source area improved the agreement between the XLAS and eddy-covariance measurements. The remaining discrepancies are interpreted as being due to significant location differences between the two instruments, resulting in different atmospheric conditions, and to size differences in the source areas.
机译:在特奥泻湖(法国南部)上使用了几个月的超大孔径闪烁仪(XLAS),以获取单波长闪烁,并因此获得显着的热通量。我们用XLAS,涡流协方差站和在Thau泻湖上或附近测量的气象站介绍该实验。提出了使闪烁测量处理方案适应上述水条件而进行的更改以及完整的误差预算,包括对闪烁测量仪处理方案相关参数的敏感性测试。 XLAS错误预算总计为16%(系统部分)+/- 50%(随机部分)。然后将使用XLAS在不稳定的大气条件下获得的显热通量与用作参考的涡旋协方差估计进行比较。闪烁法技术证明在如此潮湿的环境中表现令人满意。根据源区域的泻湖分数调查了XLAS和涡旋协方差测量之间观察到的一些差异,以区分它们是否与Monin-Obukhov相似性理论的偏差或在各个仪器位置处的不同大气条件有关。当地的大气条件与Monin-Obukhov相似性理论非常吻合,尤其是在主要由泻湖表面组成的源区域进行的测量。仅保留源区域中几乎只有泻湖表面的测量结果,可以改善XLAS与涡度协方差测量结果之间的一致性。剩余的差异被解释为是由于两种仪器之间的明显位置差异,导致不同的大气条件以及源区域的尺寸差异。

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