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Improving spatial resolution of ET seasonal for irrigated rice in Zhanghe, China

机译:改善漳河市灌溉水稻的ET季节空间分辨率

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Recently, advances have been made to obtain estimates of evapotranspiration (ET) through remote sensing. A problem still persists to get ET over a longer time period. Orbiting satellites supply with images answering the need for water consumption data, but due to technical limitations have either high spatial resolution restricted to low revisit frequency, or frequent revisit cycle but low spatial resolution. Remote sensing technicians are facing this problem when trying to provide regular and fine resolution information about water consumption of crops in irrigation, systems. The solution would be to combine the high spatial resolution with the high temporal resolution satellite images. In this study, actual evapotranspiration images from NOAA AVHRR acquired at various dates in Zhanghe irrigation district are used together with meteorological daily reference evapotranspiration data to simulate daily evapotranspiration. A temporal integration for the May ― September rice cropping season provides the seasonal actual evapotranspiration map. This information, collected at a pixel size of 1.1 km is merged together with a Landsat 7 ETM+ image acquired at a strategic moment of the cropping season. The result is a more detailed redistribution of seasonal evapotranspiration to finer resolutions, while keeping the actual evapotranspirated global volume constant, before and after the merging. This provides a better located estimation of water consumption, especially for rice. Irrigated rice fields are of particular interest to the water managers, since these fields are the main cash crop of the irrigation district. In the discussion that follows, it is shown that the remote sensing limitations can be overcome using meteorological data and combined information from two satellites, providing detailed results of low cost.
机译:近来,已经取得了通过遥感获得对蒸散量(ET)的估计的进展。在较长时间内获得ET仍然存在问题。轨道卫星提供的图像可以满足耗水量数据的需求,但是由于技术限制,要么高空间分辨率限制在较低的重访频率,要么频繁的重访周期但空间分辨率低。遥感技术人员在尝试提供有关灌溉系统中农作物耗水量的常规和高分辨率信息时面临着此问题。解决方案是将高空间分辨率与高时间分辨率卫星图像相结合。在这项研究中,将漳河灌区在不同日期获取的来自NOAA AVHRR的实际蒸散量图像与气象日参考蒸散量数据一起用于模拟每日蒸散量。 5月至9月水稻种植季节的时间积分提供了季节性实际蒸散图。以1.1 km的像素大小收集的此信息将与在作物季节的关键时刻获取的Landsat 7 ETM +图像合并在一起。结果是在合并之前和之后,更精确地将季节性蒸散量重新分配给更精细的分辨率,同时使实际蒸散量的总体体积保持恒定。这样可以更好地估算耗水量,尤其是大米的耗水量。灌溉稻田是水资源管理者特别感兴趣的,因为这些稻田是灌溉区的主要经济作物。在下面的讨论中,表明可以使用气象数据和来自两颗卫星的组合信息来克服遥感局限性,从而提供低成本的详细结果。

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