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Using GRACE in a streamflow recession to determine drainable water storage in the Mississippi River basin

机译:在流流衰退中使用恩典来确定密西西比河流域的可排水储水

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The study of the relationship between water storage and runoff generation has long been a focus of the hydrological sciences. NASA's Gravity Recovery and Climate Experiment (GRACE) mission provides monthly depth-integrated information on terrestrial water storage anomalies derived from time-variable gravity observations. As the first basin-scale storage measurement technique, these data offer potentially novel insight into the storage-discharge relationship. Here, we apply GRACE data in a streamflow recession analysis with river discharge measurements across several subdomains of the Mississippi River basin. Nonlinear regression analysis was used for 12 watersheds to determine that the fraction of baseflow in streams during non-winter months varies from 52% to 75% regionally. Additionally, the first quantitative estimate of absolute drainable water storage was estimated. For the 2002-2014 period, the drainable storage in the Mississippi River basin ranged from 2900 +/- 400 to 3600 +/- 400 km(3).
机译:对水储存与径流生成关系的研究长期以来一直是水文科学的重点。美国宇航局的重力恢复和气候实验(Grace)任务提供了关于从时间可变重力观测的地面水储存异常的每月深度综合信息。作为第一个盆地存储测量技术,这些数据提供了对存储放电关系的可能性新的洞察力。在这里,我们将恩典数据应用于STREEP流衰退分析中,河流放电测量跨密西西比河流域的几个亚地数。非线性回归分析用于12个流域,以确定非冬季月期间溪流中的碱流量的分数在区域上的52%至75%。另外,估计绝对可排水储存的第一定量估计。在2002 - 2014年期间,密西西比河流域的可排水储存量从2900 +/- 400到3600 +/- 400公里(3)。

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