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Estimating Evapotranspiration Using Coupled Remote Sensing and Three SEB Models in an Arid Region

机译:干旱区耦合遥感与三种SEB模型的蒸散量估算

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摘要

Three surface energy balance (SEB) models were used to estimate ET based on remote sensing (RS) techniques: surface energy balance algorithm for land (SEBAL), mapping evapotranspiration at a high-resolution with internalized calibration (METRIC™), and simplified surface energy balance index (S-SEBI). The study was conducted on the Todhia Arable Farm (TAF), located in the Riyadh province of the Kingdom of Saudi Arabia. Both RS data and meteorological data were used. RS data were obtained by processing 20 Landsat 8 satellite images for 2014 focused on alfalfa cultivation. The estimated ET was validated by comparing it with the measured ET using an eddy covariance (EC) device. The ET values estimated by the SEBAL, METRIC, and S-SEBI models were 1.7-18.9 mm-d~(-1) with a mean of 8.3 mnvd"1, 2.8-22.4 mnvd~(-1) with a mean of 11.0 mnvd~(-1), and 6.5-21.6 mmd~(-1) with a mean of 15.7 mnvd~(-1), respectively. The highest ET values were observed in cultivated areas, particularly during the periods of increased irrigation. The comparison between the estimated and measured ET indicated that the METRIC model exhibited the best performance, with a root-mean-square deviation (RMSD) of 1.7 mmd~(-1). The S-SEBI model was less accurate, followed by the SEBAL model, with an RMSD of 2.9 and 3.1 mm d~(-1), respectively. The METRIC model exhibited moderate ET results as well and is considered to be the most suitable ET SEB model for arid regions.
机译:基于遥感(RS)技术,使用了三种表面能平衡(SEB)模型来估算ET:土地表面能平衡算法(SEBAL),高分辨率的蒸发蒸腾量和内部校准(METRIC™)以及简化的表面能量平衡指数(S-SEBI)。这项研究是在沙特阿拉伯王国利雅得省的Todhia耕地农场(TAF)上进行的。 RS数据和气象数据都被使用。 RS数据是通过处理2014年针对苜蓿种植的20张Landsat 8卫星图像获得的。通过使用涡动协方差(EC)设备将估计的ET与测得的ET进行比较,从而验证了估计的ET。 SEBAL,METRIC和S-SEBI模型估计的ET值为1.7-18.9 mm-d〜(-1),平均值为8.3 mnvd“ 1,2.8-22.4 mnvd〜(-1),平均值为11.0 mnvd〜(-1)和6.5-21.6 mmd〜(-1)的平均值分别为15.7 mnvd〜(-1),在耕地,尤其是在灌溉增加的时期,ET值最高。估计的和测量的ET之间的比较表明,METRIC模型表现出最好的性能,均方根偏差(RMSD)为1.7 mmd〜(-1); S-SEBI模型的准确性较差,其次是SEBAL RMSD分别为2.9和3.1 mm d〜(-1),METRIC模型也显示出适中的ET结果,被认为是最适合干旱地区的ET SEB模型。

著录项

  • 来源
    《Environmental Processes》 |2020年第1期|109-133|共25页
  • 作者单位

    Alamoudi Water Research Chair King Saud University Riyadh 11451 Kingdom of Saudi Arabia;

    Alamoudi Water Research Chair King Saud University Riyadh 11451 Kingdom of Saudi Arabia Agricultural Engineering Department King Saud University. Riyadh 11451 Kingdom of Saudi Arabia;

    Agricultural Engineering Department King Saud University. Riyadh 11451 Kingdom of Saudi Arabia Agricultural Engineering Department Ain Shams University Cairo 11241 Egypt;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Evapotranspiration; Remote sensing; SEBAL; METRIC; S-SEBI;

    机译:蒸发蒸腾;遥感;SEBAL;公制;塞比;

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