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Characterization of terrestrial water dynamics in the Congo Basin using GRACE and satellite radar altimetry

机译:利用GRACE和卫星雷达高程表征刚果盆地的陆地水动力学。

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The Congo Basin is the world's third largest in size (~3.7millionkm~2), and second only to the Amazon River in discharge (~40,200m~3s~(-1) annual average). However, the hydrological dynamics of seasonally flooded wetlands and floodplains remains poorly quantified. Here, we separate the Congo wetland into four 3°×3° regions, and use remote sensing measurements (i.e., GRACE, satellite radar altimeter, GPCP, JERS-1, SRTM, and MODIS) to estimate the amounts of water filling and draining from the Congo wetland, and to determine the source of the water. We find that the amount of water annually filling and draining the Congo wetlands is 111km~3, which is about one-third the size of the water volumes found on the mainstem Amazon floodplain. Based on amplitude comparisons among the water volume changes and timing comparisons among their fluxes, we conclude that the local upland runoff is the main source of the Congo wetland water, not the fluvial process of river-floodplain water exchange as in the Amazon. Our hydraulic analysis using altimeter measurements also supports our conclusion by demonstrating that water surface elevations in the wetlands are consistently higher than the adjacent river water levels. Our research highlights differences in the hydrology and hydrodynamics between the Congo wetland and the mainstem Amazon floodplain.
机译:刚果盆地是世界第三大河流域(约370万平方公里),仅次于亚马孙河流域(年平均流量约40,200m〜3s〜(-1))。然而,季节性洪水湿地和洪泛区的水文动态仍然难以量化。在这里,我们将刚果湿地分为四个3°×3°的区域,并使用遥感测量(即GRACE,卫星雷达高度计,GPCP,JERS-1,SRTM和MODIS)估算注水量和排水量从刚果湿地,并确定水源。我们发现,每年填充和排干刚果湿地的水量为111km〜3,大约是亚马逊干流平原上发现的水量的三分之一。根据水量变化之间的振幅比较和通量之间的时间比较,我们得出结论,当地的高地径流是刚果湿地水的主要来源,而不是像亚马逊河那样的河洪平原水交换的河流过程。我们使用高度计测量进行的水力分析也证明了湿地的水面高度始终高于相邻河流的水位,从而支持了我们的结论。我们的研究突出了刚果湿地和亚马逊干流平原之间的水文和水动力差异。

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