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Estimation of regional evapotranspiration over the Southern Great Plains based on Penman-Monteith theory and the soil moisture estimates

机译:基于Penman-Monteith理论和土壤湿度估算的大平原南部地区蒸散量估算

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Penman-Monteith (PM) theory is a classic method to calculate evapotranspiration (ET) of land surfaces. However, soil resistance, related to soil moisture, is always difficult to determine over a large region. In this study, we developed an ET estimation algorithm by incorporating a soil moisture index (SMI) derived from the improved surface temperature-vegetation cover feature space, denoted as the PM-SMI algorithm. The PM-SMI algorithm was compared with the triangle algorithm and another Penman-Monteith based algorithm (PM-Yuan) that calculated soil evaporation using relative humidity. The three ET algorithms are compared and validated by Bowen Ratio measurements at 12 sites in the Southern Great Plain (SGP) that were mainly covered by grassland and cropland with low vegetation cover. The results showed that the PM-SMI algorithm performs the best among the three ET algorithms both on the instantaneous scale with R2 of 0.86, RMSE of 53.67 W/m2, bias of 6.83 W/m2 and the daily scale with R2 of 0.87, RMSE of 39.07 W/m2, and bias of −4.04 W/m2. PM-Yuan algorithm significantly underestimates ET resulting from soil evaporation and compared to triangle ET algorithm, PM-SMI is more reliable for estimation of ET over regional scale.
机译:Penman-Monteith(PM)理论是一种计算陆地表面蒸散量(ET)的经典方法。但是,与土壤湿度有关的土壤抗性始终很难在大范围内确定。在这项研究中,我们通过结合从改良的表面温度-植被覆盖特征空间得出的土壤水分指数(SMI),开发了ET估计算法,称为PM-SMI算法。将PM-SMI算法与三角算法以及另一种基于Penman-Monteith的算法(PM-Yuan)进行了比较,该算法使用相对湿度来计算土壤蒸发。三种ET算法通过在南部大平原(SGP)的12个站点进行了Bowen比率测量进行比较和验证,这些站点主要被植被覆盖率较低的草地和农田覆盖。结果表明,PM-SMI算法在R2为0.86的瞬时尺度,RMSE为53.67 W / m2,偏差为6.83 W / m2的瞬时尺度和R2为0.87,RMSE的日尺度上均表现最佳。 39.07 W / m2的偏压和-4.04 W / m2的偏压。 PM-Yuan算法大大低估了土壤蒸发产生的ET,并且与三角ET算法相比,PM-SMI在区域范围内估算ET更可靠。

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