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Simulating the sensitivity of evapotranspiration and streamflow to large-scale groundwater depletion

机译:模拟蒸散和水流对大规模地下水耗竭的敏感性

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摘要

Groundwater pumping has caused marked aquifer storage declines over the past century. In addition to threatening the viability of groundwater-dependent economic activities, storage losses reshape the hydrologic landscape, shifting groundwater surface water exchanges and surface water availability. A more comprehensive understanding of modern groundwater-depleted systems is needed as we strive for improved simulations and more efficient water resources management. Here, we begin to address this gap by evaluating the impact of 100 years of groundwater declines across the continental United States on simulated watershed behavior. Subsurface storage losses reverberate throughout hydrologic systems, decreasing streamflow and evapotranspiration. Evapotranspiration declines are focused in water-limited periods and shallow groundwater regions. Streamflow losses are widespread and intensify along drainage networks, often occurring far from the point of groundwater abstraction. Our integrated approach illustrates the sensitivity of land surface simulations to groundwater storage levels and a path toward evaluating these connections in large-scale models.
机译:在过去的一个世纪中,地下水的抽取已经导致含水层的储存量显着下降。除了威胁依赖地下水的经济活动的生存能力外,储存损失还改变了水文景观,改变了地下水的地表水交换和地表水的可利用性。随着我们努力改善模拟效果和提高水资源管理效率,需要对现代地下水枯竭系统有更全面的了解。在这里,我们开始通过评估美国大陆上100年地下水位下降对模拟流域行为的影响来解决这一差距。地下存储损失在整个水文系统中回荡,减少了流量和蒸散量。蒸散量的下降主要集中在水有限的时期和浅水区。径流损失在排水网络中分布广泛并加剧,通常发生在远离地下水抽取点的地方。我们的综合方法说明了地表模拟对地下水存储水平的敏感性,以及在大型模型中评估这些连接的途径。

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