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An improved method for estimating global evapotranspiration based on satellite determination of surface net radiation, vegetation index, temperature, and soil moisture

机译:基于卫星测定的地表净辐射,植被指数,温度和土壤水分估算全球蒸散术的改进方法

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We proposed a method in an earlier study to estimate latent heat of evapotranspiration (ET). However, the influence of soil moisture (SM) on ET was not well considered and is addressed in this paper by incorporating the Diurnal land surface temperature (Ts) Range (DTsR). ET, measured at twelve sites in the U. S. during 2001-2006, is used to validate the improved method. Site land cover varies from grassland, native prairie, cropland, deciduous forest, to evergreen forest. The correlation coefficient between the measured and predicted 16-day daytime-average ET is about 0.92 for all the sites, the bias is -1.9 W m??2 and the Root Mean Square Error (RMSE) is 28.6 W m??2. We calculated global monthly ET from 1986 to 1995 at a spatial resolution of 1?° ?? 1?° from the International Satellite Land Surface Climatology Project (ISLSCP) Initiative II global interdisciplinary monthly dataset and compared it with the fifteen land surface model simulations of the Global Soil Wetness Project-2. The results of the comparison of 118 months global daily ET show that the bias is 4.5 W m??2, the RMSE is 19.8 W m??2 and the correlation coefficient is 0.82.
机译:我们提出了一种在早期研究中的方法来估计蒸散蒸腾液的潜热(ET)。然而,通过将昼夜陆地温度(T S )范围(DTSR)掺入本文的情况下,在ET上的影响并不适用于ET的影响。在U.2006期间在U. S中的12个位点测量的ET。用于验证改进的方法。网站覆盖覆盖因草地,原住民大草原,农田,落叶林,到常绿森林而异。所有站点的测量和预测的16天白天平均等的相关系数为约0.92,偏置为-1.9 W m ?? 2 并且根均线误差(RMSE)是28.6 W m ?? 2 。我们从1986年到1995年计算全球每月等,以1?°的空间分辨率? 1?°从国际卫星地表气候项目(ISLSCP)倡议II全球跨学科的月度数据集,并与全球土壤湿度项目-2的十五个地表模型模拟进行了比较。 Global Daily ET的118个月的比较结果表明,偏差为4.5W m ?? 2 ,RMSE为19.8W m ?? 2 和相关系数是0.82。

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