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Mapping evapotranspiration trends using MODIS and SEBAL model in a data scarce and heterogeneous landscape in Eastern Africa

机译:使用MODIS和SEBAL模型在东非数据稀缺和异质景观中绘制蒸散趋势

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Evapotranspiration (ET) accounts for a substantial amount of the water use in river basins particular in the tropics and arid regions. However, accurate estimation still remains a challenge especially in large spatially heterogeneous and data scarce areas including the Upper Pangani River Basin in Eastern Africa. Using multitemporal Moderate-resolution Imaging Spectroradiometer (MODIS) and Surface Energy Balance Algorithm of Land (SEBAL) model, 138 images were analyzed at 250 m, 8 day scales to estimate actual ET for 16 land use types for the period 2008-2010. A good agreement was attained for the SEBAL results from various validations. For open water evaporation, the estimated ET for Nyumba ya Mungu (NyM) reservoir showed a good correlations (R = 0.95; R~2 = 0.91; Mean Absolute Error (MAE) and Root Means Square Error (RMSE) of less than 5%) to pan evaporation using an optimized pan coefficient of 0.81. An absolute relative error of 2% was also achieved from the mean annual water balance estimates of the reservoir. The estimated ET for various agricultural land uses indicated a consistent pattern with the seasonal variability of the crop coefficient (K_c) based on Penman-Monteith equation. In addition, ET estimates for the mountainous areas has been significantly suppressed at the higher elevations (above 2300 m a.s.l.), which is consistent with the decrease in potential evaporation. The calculated surface outflow (Q_s) through a water balance analysis resulted in a bias of 12% to the observed discharge at the outlet of the river basin. The bias was within 13% uncertainty range at 95% confidence interval for Q_s. SEBAL ET estimates were also compared with global ET from MODIS 16 algorithm (R = 0.74; R2 = 0.32; RMSE of 34% and MAE of 28%) and comparatively significant in variance at 95% confidence level. The interseasonal and intraseasonal ET fluxes derived have shown the level of water use for various land use types under different climate conditions. The evaporative water use in the river basin accounted for 94% to the annual precipitation for the period of study. The results have a potential for use in hydrological analysis and water accounting.
机译:蒸散量(ET)在流域,特别是在热带地区和干旱地区,占大量用水。但是,准确的估计仍然是一个挑战,特别是在空间异质性和数据稀缺的地区,包括东部非洲的上潘加尼河流域。使用多时相中分辨率成像光谱仪(MODIS)和土地表面能量平衡算法(SEBAL)模型,以250 m,8天的比例分析了138张图像,以估算2008-2010年期间16种土地利用类型的实际ET。各种验证对SEBAL结果达成了良好的协议。对于裸露水蒸发,Nyumba ya Mungu(NyM)水库的估计ET表现出良好的相关性(R = 0.95; R〜2 = 0.91;平均绝对误差(MAE)和均方根误差(RMSE)小于5%) ),以使用0.81的最佳声像系数进行声像蒸发。从水库的年均水平衡估算值也可得出2%的绝对相对误差。根据Penman-Monteith方程,各种农用土地的ET估计值与作物系数(K_c)的季节变化具有一致的模式。此外,在较高海拔(2300 m a.s.l.以上),山区的ET估计值已被显着抑制,这与潜在蒸发的减少是一致的。通过水平衡分析计算出的地表流出量(Q_s)导致流域出口处观测到的流量有12%的偏差。偏差在Q_s的95%置信区间内处于13%不确定范围内。 SEBAL ET估计值也与来自MODIS 16算法的全局ET进行了比较(R = 0.74; R2 = 0.32; RMSE为34%,MAE为28%),并且在95%的置信水平下,方差比较显着。得出的季节间和季节内ET通量已显示出不同气候条件下各种土地利用类型的用水水平。在研究期间,流域的蒸发水使用量占年降水量的94%。该结果具有用于水文分析和水核算的潜力。

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  • 来源
    《Water resources research 》 |2013年第12期| 8495-8510| 共16页
  • 作者单位

    UNESCO-IHE, Institute for Water Education, Westvest 7, P.O. Box 3015, 2601 DA Delft, Netherlands,Jomo Kenyatta University of Agriculture and Technology, Nairobi,Kenya;

    UNESCO-IHE, Institute for Water Education, Delft, Netherlands,Delft University of Technology, Delft, Netherlands,Hydraulic Research Station, Wad Medani, Sudan;

    UNESCO-IHE, Institute for Water Education, Delft, Netherlands,International Water Management Institute, Cantonments, Accra, Ghana;

    UNESCO-IHE, Institute for Water Education, Delft, Netherlands,Delft University of Technology, Delft, Netherlands;

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