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Assessment of observed and model-derived soil moisture-evaporative fraction relationships over the United States Southern Great Plains

机译:评估美国南部大平原上观测到的和基于模型的土壤水分蒸发分数关系

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摘要

The relationship between soil moisture (SM) and evaporative fraction (EF) is an important component of land-atmosphere interactions. Frequently, land-atmosphere studies are based on land-surface models and not on observations. This study examines SM-EF interactions over the United States Southern Great Plains using both in situ observations and simulations from the Variable Infiltration Capacity hydrologic model. Specifically, we evaluate how the relationship between SM and EF varies by season, we determine why these variations occur, and we compare model-derived and observed SM-energy flux relationships. Data from four sites (2004-2008) that are part of the United States Department of Energy's Atmospheric Radiation MeasurementSouthern Great Plains network are used in this study. Results show that SM-EF interactions in both the model and observations are in general agreement with the evaporative regime theory described in past studies. That is, EF is a linear function of SM when SM is between the wilting point and the critical value, and when SM is above the critical value, EF is not dependent on SM. However, SM-EF relationships vary substantially from year to year. EF is a linear function of SM only when daily net radiation is above normal. Our results suggest that the strength of SM-EF interactions is not solely controlled by soil wetness but is also strongly influenced by daily net radiation and meteorological conditions.
机译:土壤水分(SM)和蒸发分数(EF)之间的关系是土地-大气相互作用的重要组成部分。通常,陆地大气研究是基于陆地表面模型而不是观测数据。这项研究使用原位观测和可变渗透能力水文模型的模拟研究了美国南部大平原上的SM-EF相互作用。具体来说,我们评估SM和EF之间的关系如何随季节变化,我们确定为什么会发生这些变化,并比较模型得出的和观察到的SM能量通量关系。本研究使用了美国能源部大气辐射测量南部大平原网络中四个站点(2004-2008年)的数据。结果表明,模型和观测值中的SM-EF相互作用与过去研究中描述的蒸发状态理论基本一致。即,当SM在枯萎点和临界值之间时,EF是SM的线性函数,而当SM高于临界值时,EF不依赖于SM。但是,SM-EF关系每年都有很大差异。仅当每日净辐射高于正常值时,EF才是SM的线性函数。我们的结果表明,SM-EF相互作用的强度不仅受土壤湿度的控制,而且还受到日净辐射和气象条件的强烈影响。

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