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Transient effects of groundwater pumping and surface-water-irrigation returns on streamflow

机译:地下水泵送和地表水回灌对水流的瞬态影响

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In surface-water-irrigated western valleys, groundwater discharge from excess irrigation sustains winter streamflow at levels that exceed natural flows. This unnatural condition has persisted for so long that hydrologists, water managers, and water users consider it to be normal. Changing land uses and irrigation practices complicate efforts to manage groundwater discharge and, in turn, to protect instream flows. We examined the impacts on streamflow of (1) seasonal groundwater pumping at various distances from the Gallatin River and (2) improving irrigation efficiency in the Gallatin Valley, Montana. We show that the greater the distance from a seasonally pumping well to a stream, the less the stream depletion fluctuates seasonally and the greater the proportion of annual depletion occurs during the nonirrigation season. Furthermore, we show that increasing irrigation efficiency has implications beyond simply reducing diversions. Improving irrigation efficiency reduces fall and winter flows to a lower, but more natural condition than the artificially high conditions to which we have become accustomed. However, existing water users and aquatic ecosystems may rely upon return flows from inefficient irrigation systems. By strategically timing and locating artificial recharge within a basin, groundwater and surface water may be managed conjunctively to help maintain desirable streamflow conditions as land uses and irrigation practices change.
机译:在地表水灌溉的西部山谷中,过量灌溉造成的地下水排放使冬季的水流量维持在超过自然流量的水平。这种不自然的状况持续了很长时间,以至于水文学家,水管理者和用水者都认为这是正常的。不断变化的土地利用和灌溉方式使管理地下水的排放以及保护溪流的努力复杂化。我们研究了对(1)从加拉廷河(Gallatin River)各个距离抽出的季节性地下水和(2)改善蒙大拿州加拉廷山谷(Galatin Valley)的灌溉效率对河流流量的影响。我们显示,从季节性抽水井到河流的距离越大,河流枯竭季节变化的波动就越小,在非灌溉季节发生的年度枯竭比例也越大。此外,我们表明,提高灌溉效率的意义不仅仅在于减少转移用途。提高灌溉效率可将秋天和冬季的水流降低到比我们习惯的人为地高的条件低的水平,但自然条件要好得多。但是,现有的用水户和水生生态系统可能依赖效率低下的灌溉系统的回流。通过战略性地确定流域内人工补给的时间和位置,可以联合管理地下水和地表水,以帮助随着土地用途和灌溉方式的变化保持理想的水流状况。

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