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Comparison of satellite-based evapotranspiration estimates over the Tibetan Plateau

机译:青藏高原卫星蒸散量估算值的比较

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The Tibetan Plateau (TP) plays a major role in regional and global climate. The understanding of latent heat (LE) flux can help to better describe the complex mechanisms and interactions between land and atmosphere. Despite its importance, accurate estimation of evapotranspiration (ET) over the TP remains challenging. Satellite observations allow for ET estimation at high temporal and spatial scales. The purpose of this paper is to provide a detailed cross-comparison of existing ET products over the TP. Six available ET products based on different approaches are included for comparison. Results show that all products capture the seasonal variability well with minimum ET in the winter and maximum ET in the summer. Regarding the spatial pattern, the High resOlution Land Atmosphere surface Parameters from Space (HOLAPS) ET demonstrator dataset is very similar to the LandFlux-EVAL dataset (a benchmark ET product from the Global Energy and Water Cycle Experiment), with decreasing ET from the south-east to north-west over the TP. Further comparison against the LandFlux-EVAL over different sub-regions that are decided by different intervals of normalised difference vegetation index (NDVI), precipitation, and elevation reveals that HOLAPS agrees best with LandFlux-EVAL having the highest correlation coefficient (iR/i) and the lowest root mean square difference (RMSD). These results indicate the potential for the application of the HOLAPS demonstrator dataset in understanding the land–atmosphere–biosphere interactions over the TP. In order to provide more accurate ET over the TP, model calibration, high accuracy forcing dataset, appropriate in situ measurements as well as other hydrological data such as runoff measurements are still needed.
机译:青藏高原(TP)在区域和全球气候中起着重要作用。对潜热(LE)通量的理解可以帮助更好地描述土地与大气之间的复杂机制和相互作用。尽管它很重要,但对TP上的蒸散量(ET)的准确估算仍然具有挑战性。卫星观测可以在高时空尺度上进行ET估算。本文的目的是通过TP提供现有ET产品的详细交叉比较。包括了六种基于不同方法的可用ET产品进行比较。结果表明,所有产品都能很好地捕获季节性变化,冬季最低ET,夏季最高ET。在空间格局方面,来自太空(HOLAPS)ET演示者数据集的高分辨率地球陆地大气表面参数与LandFlux-EVAL数据集(全球能源和水循环实验的基准ET产品)非常相似,而南方的ET则有所减少-在TP上向东至西北。由归一化植被指数(NDVI),降水和海拔的不同间隔所决定的不同子区域上的LandFlux-EVAL的进一步比较表明,HOLAPS与具有最高相关系数( R )和最低的均方根差(RMSD)。这些结果表明,HOLAPS演示者数据集可用于了解TP上的土地-大气-生物圈相互作用。为了在TP上提供更准确的ET,仍需要模型校准,高精度强迫数据集,适当的原位测量以及其他水文数据(例如径流测量)。

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