首页> 外文会议>Conference on remote sensing for agriculture, ecosystems, and hydrology XIX >Assessing actual evapotranspiration via surface energy balance aiming to optimize water and energy consumption in Large Scale Pressurized Irrigation Systems
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Assessing actual evapotranspiration via surface energy balance aiming to optimize water and energy consumption in Large Scale Pressurized Irrigation Systems

机译:通过表面能平衡评估实际蒸散蒸腾,旨在优化大规模加压灌溉系统中的水和能耗

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Satellite imagery provides a dependable basis for computational models that aimed to determine actual evapotranspiration (ET) by surface energy balance. Satellite-based models enables quantifying ET over large areas for a wide range of applications, such as monitoring water distribution, managing irrigation and assessing irrigation systems' performance. With the aim to evaluate the energy and water consumption of a large scale on-turn pressurized irrigation system in the district of Aguas Nuevas, Albacete, Spain, the satellite-based image-processing model SEBAL was used for calculating actual ET. The model has been applied to quantify instantaneous, daily, and seasonal actual ET over high-resolution Landsat images for the peak water demand season (May to September) and for the years 2006 - 2008. The model provided a direct estimation of the distribution of main energy fluxes, at the instant when the satellite overpassed over each field of the district. The image acquisition day Evapotranspiration (ET_(24)) was obtained from instantaneous values by assuming a constant evaporative fraction (A) for the entire day of acquisition; then, monthly and seasonal ET were estimated from the daily evapotranspiration (ET_(daily)) assuming that ET_(24) varies in proportion to reference ET (ET_r) at the meteorological station, thus accounting for day to day variation in meteorological forcing. The comparison between the hydrants water consumption and the actual evapotranspiration, considering an irrigation efficiency of 85%, showed that a considerable amount of water and energy can be saved at district level.
机译:卫星图像为旨在通过表面能量平衡确定实际蒸发(ET)的计算模型提供可靠的基础。基于卫星的型号可以为广泛的应用程序量化ET,例如监控水分布,管理灌溉和评估灌溉系统的性能。旨在评估Aguas Nuevas地区大规模的机上加压灌溉系统的能量和用水量,基于卫星的图像处理模型Sebal用于计算实际等。该模型已应用于量化瞬时,日常和季节性实际等,以获得高分辨率的Landsat图像,以获得高峰水需求季节(5月至9月)和2006年至2008年。该模型提供了直接估计分配的主要能量通量,当卫星在地区的每个领域超越时瞬间。通过假设完整的常量蒸发部分(a)在瞬时蒸发级分(a)在整个收购时,从瞬时值获得图像获取日蒸发(ET_(24));然后,从日常蒸散(ET_(每日))估计每月和季节性ET,假设ET_(24)在气象站的参考等(ET_R)比例中变化,因此占气象迫使日常变化的日常变化。消化物耗水和实际蒸散之间的比较,考虑到灌溉效率为85%,表明,相当大量的水和能量可以在地区级节省。

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