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首页> 外文期刊>Hydrology and Earth System Sciences >Partial energy balance closure of eddy covariance evaporation measurements using concurrent lysimeter observations over grassland
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Partial energy balance closure of eddy covariance evaporation measurements using concurrent lysimeter observations over grassland

机译:使用同时的Lysimeter观测在草地上使用并发型电晕观测eAD协方差蒸发测量的部分能量平衡闭合

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With respect to ongoing discussions about the causes of energy imbalance and approaches to force energy balance closure, a method has been proposed that allows partial latent heat flux closure (Widmoser and Wohlfahrt, 2018). In the present paper, this method is applied to four measurement stations over grassland under humid and semiarid climates, where lysimeter (LY) and eddy covariance (EC) measurements were taken simultaneously. The results differ significantly from the ones reported in the literature. We distinguish between the resulting EC values being weakly and strongly correlated to LY observations as well as systematic and random deviations between the LY and EC values. Overall, an excellent match could be achieved between the LY and EC measurements after applying evaporation-linked weights. But there remain large differences between the standard deviations of the LY and adjusted EC values. For further studies we recommend data collected at time intervals even below 0.5?h. No correlation could be found between evaporation weights and weather indices. Only for some datasets, a positive correlation between evaporation and the evaporation weight could be found. This effect appears pronounced for cases with high radiation and plant water stress. Without further knowledge of the causes of energy imbalance one might perform full closure using equally distributed weights. Full closure, however, is not dealt with in this paper.
机译:关于持续讨论能源不平衡和迫使能量平衡闭合的方法的原因,已经提出了一种允许部分潜热通量闭合(WidMoser和Wohlfahrt,2018)的方法。在本文中,该方法应用于潮湿和半干气下的草地上的四个测量站,其中透明度计(LY)和涡流协方差(EC)测量同时进行。结果与文献中报道的结果有显着差异。我们区分所产生的EC值与LY观察结果弱而强烈地相关,以及LY和EC值之间的系统和随机偏差。总的来说,在施加蒸发连接的重量之后,可以在LY和EC测量之间实现优异的匹配。但是,LY和调整的EC值的标准偏差之间存在较大的差异。对于进一步的研究,我们建议在时间间隔收集的数据甚至低于0.5?h。蒸发重量和天气指数之间没有相关性。仅针对一些数据集,可以找到蒸发和蒸发重量之间的正相关。对于具有高辐射和植物水胁迫的情况,这种效果显得明显。无需进一步了解能量不平衡的原因,可以使用同等分布的权重来执行全闭合。然而,本文没有完全关闭。

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