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首页> 外文期刊>Journal of hydrometeorology >Coupled Evaluation of Below-and Aboveground Energy and Water Cycle Variables from Reanalysis Products over Five Flux Tower Sites in the United States
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Coupled Evaluation of Below-and Aboveground Energy and Water Cycle Variables from Reanalysis Products over Five Flux Tower Sites in the United States

机译:来自美国五个通量塔站点的再分析产品的地下和地下能量和水循环变量的耦合评估

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摘要

Reanalysis products are widely used to study the land-atmosphere exchanges of energy, water, and carbon fluxes and have been evaluated using in situ data above or below ground. Here, measurements for several years at five flux tower sites in the United States (with a total of 315 576 h of data) are used for the coupled evaluation of both below-and aboveground processes from three global reanalysis products and six global land data assimilation products. All products show systematic errors in precipitation, snow depth, and the timing of the melting and onset of snow. Despite the biases in soil moisture, all products show significant correlations with observed daily soil moisture for the periods with unfrozen soil. While errors in 2-m air temperature are highly correlated with errors in skin temperature for all sites, the correlations between skin and soil temperature errors are weaker, particularly over the sites with seasonal snow. While net short-and longwave radiation flux errors have opposite signs across all products, the net radiation and ground heat flux errors are usually smaller in magnitude than turbulent flux errors. On the other hand, the all-product averages usually agree well with the observations on the evaporative fraction, defined as the ratio of latent heat over the sum of latent and sensible heat fluxes. This study identifies the strengths and weaknesses of these widely used products and helps understand the connection of their errors in above-versus belowground quantities.
机译:再分析产品被广泛用于研究能量,水和碳通量的陆地-大气交换,并已使用地面以上或以下的原位数据进行了评估。在这里,对美国的五个流量塔站点进行了数年的测量(总共有315576小时的数据),用于对来自三个全球再分析产品和六个全球土地数据同化的地下和地下过程进行耦合评估。产品。所有产品在降水,积雪深度以及融雪和起雪的时间方面均显示出系统误差。尽管土壤水分存在偏差,但在未冻结的土壤期间,所有产品均与观察到的每日土壤水分显着相关。尽管所有地点的2 m气温误差与皮肤温度误差高度相关,但皮肤和土壤温度误差之间的相关性较弱,尤其是在有季节性降雪的地点。尽管在所有产品中净短波和长波辐射通量误差的符号相反,但净辐射和地热通量误差的幅度通常小于湍流通量误差。另一方面,所有产品的平均值通常与蒸发分数的观察结果非常吻合,蒸发分数定义为潜热与潜热通量与显热通量之和的比率。这项研究确定了这些广泛使用的产品的优点和缺点,并有助于了解其错误量与地下量之间的关系。

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