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Complementary relationship estimation of actual evapotranspiration in extreme cold and arid areas: a case study of the Hotan River Basin, northwest China

机译:极寒干旱地区实际蒸散量的互补关系估计-以西北和田河流域为例

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摘要

Application of complementary relationship (CR) approaches using only routine meteorological data is a very convenient method of estimating actual evapotranspiration (ETa). Reanalysis datasets and remote sensing data provide good tools to overcome the difficulties in obtaining observation data. This study of the Hotan River Basin (HRB) in northwest China serves as a prime example for estimation of ETa during 2006-2014 by using the modified generalized CR. Based on comparison and analysis, the maximum potential evaporation calculated by the Penman-based equation was adopted. The estimated ETa rates were verified using a regional water balance method at annual time scales because of the limited available data. The calibration parameter sigma was calibrated based on the elevation and underlying surface types. The mean annual ETa ranged from 2.3 mm to 800 mm during 2006-2014. ETa rates in the plains regions were higher than those in the mountainous regions. Most of ETa was concentrated in the months of May to September. A water deficit occurred in the middle and lower regions, while a water surplus occurred in the upper regions. This study not only provided a new concept for calibration, but also a potential solution for different underlying surfaces and time scales.
机译:仅使用常规气象数据来应用互补关系(CR)方法是估算实际蒸散量(ETa)的一种非常方便的方法。重新分析数据集和遥感数据为克服获取观测数据的困难提供了很好的工具。这项关于中国西北部和田河流域(HRB)的研究,是使用修正的广义CR估算2006年至2014年ETa的主要示例。在比较和分析的基础上,采用了基于Penman方程的最大潜在蒸发量。由于可用数据有限,估计的ETa率已使用年度时间尺度上的区域水平衡方法进行了验证。根据标高和下面的表面类型对校准参数sigma进行校准。在2006-2014年期间,平均年度ETa范围从2.3毫米到800毫米。平原地区的ETa率高于山区。 ETA的大部分时间集中在5月至9月。中部和下部地区出现缺水,而上部地区出现缺水。这项研究不仅为校准提供了新概念,而且为不同的下层表面和时标提供了潜在的解决方案。

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