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Estimating Evapotranspiration from an Improved Two-Source Energy Balance Model Using ASTER Satellite Imagery

机译:利用ASTER卫星图像从改进的两源能量平衡模型估算蒸散量

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Reliably estimating the turbulent fluxes of latent and sensible heat at the Earth’s surface by remote sensing is important for research on the terrestrial hydrological cycle. This paper presents a practical approach for mapping surface energy fluxes using Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images from an improved two-source energy balance (TSEB) model. The original TSEB approach may overestimate latent heat flux under vegetative stress conditions, as has also been reported in recent research. We replaced the Priestley-Taylor equation used in the original TSEB model with one that uses plant moisture and temperature constraints based on the PT-JPL model to obtain a more accurate canopy latent heat flux for model solving. The collected ASTER data and field observations employed in this study are over corn fields in arid regions of the Heihe Watershed Allied Telemetry Experimental Research (HiWATER) area, China. The results were validated by measurements from eddy covariance (EC) systems, and the surface energy flux estimates of the improved TSEB model are similar to the ground truth. A comparison of the results from the original and improved TSEB models indicates that the improved method more accurately estimates the sensible and latent heat fluxes, generating more precise daily evapotranspiration (ET) estimate under vegetative stress conditions.
机译:通过遥感可靠地估算地球表面潜热和显热的湍流,对于研究陆地水文循环至关重要。本文提出了一种实用的方法,该方法使用来自改进的两源能量平衡(TSEB)模型的高级星载热发射和反射辐射计(ASTER)图像来绘制表面能通量。正如最近的研究报道,原始的TSEB方法可能会高估植物人在营养胁迫条件下的潜热通量。我们将原始TSEB模型中使用的Priestley-Taylor方程替换为一个基于PT-JPL模型使用植物水分和温度约束的方程,以获取更准确的树冠潜热通量来进行模型求解。这项研究中收集的ASTER数据和实地观察是在中国黑河流域联合遥测实验研究(HiWATER)干旱地区的玉米田上。通过涡流协方差(EC)系统的测量结果验证了结果,改进的TSEB模型的表面能通量估计值与地面真实情况相似。对原始和改进的TSEB模型的结果进行的比较表明,改进的方法可以更准确地估算感热通量和潜热通量,从而在植物压力条件下产生更精确的日蒸散量(ET)估算值。

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