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首页> 外文期刊>Journal of hydrometeorology >GRACE Improves Seasonal Groundwater Forecast Initialization over the United States
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GRACE Improves Seasonal Groundwater Forecast Initialization over the United States

机译:格雷斯改善了美国的季节性地下水预测初始化

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摘要

We evaluate the impact of Gravity Recovery and Climate Experiment data assimilation (GRACE-DA) on seasonal hydrological forecast initialization over the United States, focusing on groundwater storage. GRACE-based terrestrial water storage (TWS) estimates are assimilated into a land surface model for the 2003-16 period. Three-month hindcast (i.e., forecast of past events) simulations are initialized using states from the reference (no data assimilation) and GRACE-DA runs. Differences between the two initial hydrological condition (IHC) sets are evaluated for two forecast techniques at 305 wells where depth to water table measurements are available. Results show that using GRACE-DA-based IHC improves seasonal groundwater forecast performance in terms of both RMSE and correlation. While most regions show improvement, degradation is common in the High Plains, where withdrawals for irrigation practices affect groundwater variability more strongly than the weather variability, which demonstrates the need for simulating such activities. These findings contribute to recent efforts toward an improved U.S. drought monitoring and forecast system.
机译:我们评估重力回收和气候实验数据同化(Grace-DA)对美国季节性水文预测初始化的影响,重点是地下水储存。基于Grace的地面储水(TWS)估计被同化为2003-16期的土地表面模型。三个月的Hindcast(即,过去事件的预测)模拟使用来自参考(无数据同化)和Grace-DA运行的状态初始化。在305孔中评估两个初始水文条件(IHC)集合的差异,其中可以在305孔中获得水位测量的深度。结果表明,基于Grace-DA的IHC在RMSE和相关性方面提高了季节性地下水预测性能。虽然大多数地区表现出改善,但在高平原中,降解是常见的,其中用于灌溉实践的撤销比天气变异性更强烈地影响地下水变异性,这表明需要模拟这些活动的需要。这些调查结果有助于最近努力改善美国干旱监测和预测系统。

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