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Potential of Using Remote Sensing Techniques for Global Assessment of Water Footprint of Crops

机译:利用遥感技术对作物水足迹进行总体评估的潜力

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Remote sensing has long been a useful tool in global applications, since it provides physically-based, worldwide, and consistent spatial information. This paper discusses the potential of using these techniques in the research field of water management, particularly for ‘Water Footprint’ (WF) studies. The WF of a crop is defined as the volume of water consumed for its production, where green and blue WF stand for rain and irrigation water usage, respectively. In this paper evapotranspiration, precipitation, water storage, runoff and land use are identified as key variables to potentially be estimated by remote sensing and used for WF assessment. A mass water balance is proposed to calculate the volume of irrigation applied, and green and blue WF are obtained from the green and blue evapotranspiration components. The source of remote sensing data is described and a simplified example is included, which uses evapotranspiration estimates from the geostationary satellite Meteosat 9 and precipitation estimates obtained with the Climatic Prediction Center Morphing Technique (CMORPH). The combination of data in this approach brings several limitations with respect to discrepancies in spatial and temporal resolution and data availability, which are discussed in detail. This work provides new tools for global WF assessment and represents an innovative approach to global irrigation mapping, enabling the estimation of green and blue water use.
机译:长期以来,遥感一直是全球应用程序中的有用工具,因为它可以提供基于物理的,全球范围的一致的空间信息。本文讨论了在水管理研究领域中使用这些技术的潜力,尤其是在“水足迹”(WF)研究中。作物的WF定义为生产所消耗的水量,其中绿色和蓝色WF分别代表雨水和灌溉用水。在本文中,蒸散量,降水量,蓄水量,径流量和土地利用被确定为关键变量,有可能通过遥感进行估算并用于WF评估。提出了水质平衡来计算所应用的灌溉量,并且从绿色和蓝色蒸散分量中获得了绿色和蓝色WF。描述了遥感数据的来源,并包括了一个简化的示例,该示例使用了对地静止卫星Meteosat 9的蒸散量估算值和通过气候预测中心变形技术(CMORPH)获得的降水量估算值。这种方法中的数据组合在空间和时间分辨率以及数据可用性方面的差异方面带来了一些限制,将对此进行详细讨论。这项工作为全球WF评估提供了新工具,并代表了一种创新的全球灌溉制图方法,可以估算绿色和蓝色水的使用量。

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