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Surface energy-balance closure over rangeland grass using the eddy covariance method and surface renewal analysis

机译:涡度协方差法和地表更新分析法对草地草地表面能平衡的封闭

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The performance of surface renewal (SR) analysis for estimating sensible heat (H), latent heat (L w E) and carbon dioxide (L p F p) flux, and the closure of the surface energy-balance equation were analyzed in an experiment at a rangeland grass site in the foothills of the Sierra Nevada Mountains (Ione, CA, USA). Both the L w E and H fluxes in late fall, winter, and early spring (the wet period) were relevant in the energy-balance, but from early spring to fall (dry period), most of the available net surface-energy contributed to sensible heat flux. The site is influenced by regional advection and some degree of dissimilarity between temperature and the other two scalars was observed. To our knowledge, this is the first paper evaluating the capability of SR analysis to (1) close the energy-balance on a long-term experiment and (2) estimate carbon dioxide flux. The SR analysis performance was evaluated in terms of the correlation with fluxes from the eddy covariance (EC) method and its capability to close the surface energy-balance. Regardless of the weather conditions, the EC closure underestimated the available energy by about 10%, but the performance was slightly better during dry rather than humid conditions. In contrast, the SR closure was always good and did not favor wetness conditions. Despite the lack of similarity, the energy partitioning provided by SR analysis was reliable for all three scalars. SR analysis provided reliable Bowen ratio estimates. Under stable atmospheric conditions fluxes were too small to evaluate either method.
机译:在实验中分析了表面更新(SR)分析以估算显热(H),潜热(L w E)和二氧化碳(L p F p)通量的性能,并分析了表面能平衡方程的闭合性在内华达山脉山麓(美国加利福尼亚州伊恩)的牧场草地上。秋末,冬季和早春(湿润期)的L w E和H通量都与能量平衡有关,但是从早春到秋季(干燥期),大部分可用的净表面能显热通量。该位置受区域对流影响,并且观察到温度与其他两个标量之间存在一定程度的差异。据我们所知,这是第一篇评估SR分析的能力的论文,该能力是(1)在长期实验中关闭能量平衡并(2)估算二氧化碳通量。根据与涡动协方差(EC)方法的通量之间的相关性及其关闭表面能量平衡的能力,评估了SR分析性能。不管天气条件如何,EC的关闭都低估了可用能量约10%,但在干燥而不是潮湿的条件下,性能略好。相比之下,SR密封始终是好的,并且不利于潮湿条件。尽管缺乏相似性,但SR分析提供的能量分配对于所有三个标量都是可靠的。 SR分析提供了可靠的Bowen比率估计。在稳定的大气条件下,通量太小而无法评估这两种方法。

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