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Derivation of Daily Evaporative Fraction Based on Temporal Variations in Surface Temperature, Air Temperature, and Net Radiation

机译:基于表面温度,空气温度和净辐射的时间变化推导每日蒸发分数

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摘要

Based on surface energy balance and the assumption of fairly invariant evaporative fraction (EF) during daytime, this study proposes a new parameterization scheme of directly estimating daily EF. Daily EF is parameterized as a function of temporal variations in surface temperature, air temperature, and net radiation. The proposed EF parameterization scheme can well reproduce daily EF estimates from a soil-vegetation-atmosphere transfer (SVAT) model with a root mean square error (RMSE) of 0.13 and a coefficient of determination (R2) of 0.719. When input variables from in situ measurements at the Yucheng station in North China are used, daily EF estimated by the proposed method is in good agreement with measurements from the eddy covariance system corrected by the residual energy method with an R2 of 0.857 and an RMSE of 0.119. MODIS/Aqua remotely sensed data were also applied to estimate daily EF. Though there are some inconsistencies between the remotely sensed daily EF estimates and in situ measurements due to errors in input variables and measurements, the result from the proposed parameterization scheme shows a slight improvement to SEBS-estimated EF with remotely sensed instantaneous inputs.
机译:基于表面能平衡和白天蒸发常数相当不变的假设,本研究提出了一种直接估计每日EF的新参数化方案。每天的EF被参数化为表面温度,空气温度和净辐射随时间变化的函数。所提出的EF参数化方案可以很好地重现土壤-植被-大气转移(SVAT)模型的每日EF估计值,均方根误差(RMSE)为0.13,确定系数为(R 2 )为0.719。当使用华北地区雨城站现场测量的输入变量时,通过该方法估算的每日EF与采用R 2的残差能量法校正的涡度协方差系统的测量值吻合良好 0.857,RMSE为0.119。 MODIS / Aqua遥感数据也用于估计每日EF。尽管由于输入变量和测量值的误差,遥感的每日EF估计值与原位测量值之间存在一些不一致之处,但建议的参数化方案的结果显示,对SEBS估计的具有瞬时瞬时输入值的EF略有改进。

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