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A site-level comparison of lysimeter and eddy covariance flux measurements of evapotranspiration

机译:蒸散蒸腾度的立体级比较蒸散量和eDDy协方差磁通量测量

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Accurate measurements of evapotranspiration are required for many meteorological, climatological, ecological, and hydrological research applications and developments. Here we examine and compare two well-established methods to determine evapotranspiration at the site level: lysimeter-based measurements?(EL) and eddy covariance?(EC) flux measurements?(EEC). The analyses are based on parallel measurements carried out with these two methods at the research catchment Rietholzbach in northeastern Switzerland, and cover the time period of June?2009 to December?2015. The measurements are compared on various timescales, and with respect to a 40-year lysimeter-based evapotranspiration time series. Overall, the lysimeter and EC measurements agree well, especially on the annual timescale. On that timescale, the long-term lysimeter measurements also correspond well with catchment water-balance estimates of evapotranspiration. This highlights the representativeness of the site-level lysimeter and EC measurements for the entire catchment despite their comparatively small source areas and the heterogeneous land use and topography within the catchment. Furthermore, we identify that lack of reliable EC measurements using open-path gas analyzers during and following precipitation events (due to limitations of the measurement technique under these conditions) significantly contributes to an underestimation of EEC and to the overall energy balance gap at the site.
机译:对于许多气象,气候,生态和水文研究应用和发展,需要准确测量蒸散。在这里,我们检查并比较了两种既定的方法,以确定现场等级的蒸散量:基于Lysimeter的测量值?(EL)和涡旋变协方差?(EC)通量测量?(EEC)。该分析基于在瑞士东北部的研究流域Rietholzbach的这两种方法进行的并行测量,并涵盖6月的时间 - 2009年到12月2015年。测量比较在各种时间尺度和基于40岁的基于型计的蒸发时间序列的比较。总的来说,Lysimeter和EC测量很好,特别是在年度时间阶段。在该时间尺度上,长期的Lysimeter测量还与蒸散的集水平衡估计相同。尽管它们在集水区内的源区和异质土地利用和地形,但这突出了整个集水器的代表性和EC测量。此外,我们确定使用开放式气体分析仪缺乏可靠的EC测量,并在降水事件期间(由于这些条件下的测量技术的限制)显着促进了EEC的低估和网站上的整体能量平衡差距。

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