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Energy balance modeling of agricultural areas by remote sensing

机译:农业区域能源平衡的遥感建模

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The integrated water resource management required to face the water scarcity situation in semiarid regions relies on the ability to obtain accurate information about the use of water by crops and natural vegetation. Thermal remote sensing provides key data about the vegetation water status. The integration of this remotely sensed data into water and energy balance models help to better estimate evapotranspiration under heterogeneous cropping and natural vegetation patterns, extending the field of application of these models from point to basin and regional scales. In this work, we present an approach to estimate spatially distributed surface energy fluxes using a series of Landsat TM satellite images combined with simulation modeling and ground-based measurements. A physically-based method for the energy budget partitioning following the Two Source Model ~([1,2]) has been applied over an heterogeneous agricultural area located in southern Spain. The study was performed during 2009 crop growing season and the results were validated with field data collected with an eddy covariance system installed over a corn field during the season. The instantaneous and daily estimations were compared to the measured data, obtaining a general good adjustment at both scales and setting the basis for a larger scale application that may assist a decision - making tool for water resources planning in the region.
机译:应对半干旱地区缺水状况所需的综合水资源管理取决于获得关于作物和自然植被用水的准确信息的能力。热遥感提供有关植被水状况的关键数据。将该遥感数据整合到水和能量平衡模型中,有助于更好地估计异种作物和自然植被模式下的蒸散量,从而将这些模型的应用范围从点扩展到流域和区域范围。在这项工作中,我们提出了一种方法,该方法使用一系列Landsat TM卫星图像结合模拟建模和基于地面的测量来估算空间分布的表面能通量。一种基于物理方法的能源预算分配方法,遵循两源模型〜([1,2]),已应用于西班牙南部的异类农业地区。这项研究是在2009年农作物生长季节进行的,并使用该季节在玉米田上安装的涡旋协方差系统收集的田间数据验证了结果。将瞬时和每日估算值与实测数据进行比较,从而在两个尺度上获得总体良好的调整,并为更大规模的应用奠定了基础,这可能有助于该地区水资源规划的决策工具。

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