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首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Estimation of Growing Season Daily ET in the Middle Stream and Downstream Areas of the Heihe River Basin Using HJ-1 Data
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Estimation of Growing Season Daily ET in the Middle Stream and Downstream Areas of the Heihe River Basin Using HJ-1 Data

机译:利用HJ-1资料估算黑河流域中下游地区的生长季日ET。

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Spatial mapping of evapotranspiration (ET) is specifically critical for the semi-arid inland river basin with great heterogeneity in land-cover types. This letter estimates the spatial distribution of daily ET over the middle stream and downstream areas of the Heihe River Basin during the growing season of 2012 by using the Surface Energy Balance System algorithm with land surface temperature at high spatial resolution (300 m) derived from observations by the Chinese satellite HJ-1. The results demonstrate that ET estimates are consistent with ground-based measurements collected during the Heihe Watershed Allied Telemetry Experimental Research (HiWATER) with acceptable accuracy. The magnitude of daily ET in the downstream area is obviously lower than that in the middle stream area. Further analysis based on classification maps shows that there is significant temporal–spatial heterogeneity of daily ET over different land-cover surfaces and also within the same vegetation type. The temporal variation of ET in the middle stream area has clear seasonality with an obvious peak in July, whereas it is flat in the downstream area due to the dominating arid-region vegetation species and low soil water content in growing season. In addition, because of the abundant irrigation in the maize and irrigated orchard fields, the daily ET values of them are higher than that of wetland and even comparable with that of water surface in the middle stream area of the Heihe River Basin.
机译:蒸散量(ET)的空间制图对于半干旱内陆河流域特别重要,因为其土地覆盖类型具有很大的异质性。这封信通过使用表面能平衡系统算法估算了黑河流域中游和下游地区2012年生长期的每日ET的空间分布,该算法具有从观测获得的高分辨率(300 m)的地表温度由中国卫星HJ-1结果表明,ET估算值与黑河流域联合遥测实验研究(HiWATER)期间收集的地面测量结果一致,且精度可接受。下游地区的日蒸散量明显低于中游地区。基于分类图的进一步分析表明,在不同的土地覆盖表面以及同一植被类型内,每日ET存在明显的时空异质性。中游区ET的时间变化具有明显的季节性,在7月出现明显的峰值,而下游区则由于干旱地区的植被种类占主导地位且生长季节土壤含水量较低而处于平坦状态。此外,由于玉米和果园的灌溉量很大,它们的日ET值高于湿地,甚至与黑河流域中游区的水面相当。

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