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Technical and administrative feasibility of alluvial aquifer storage and recovery on the South Platte River of northeastern Colorado

机译:科罗拉多州东北部南普拉特河上冲积含水层储存和回收的技术和行政可行性

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摘要

Increasing population and climate change are causing water managers to reassess water storage. In this context, alluvial aquifer storage and recovery (ASR), in which excess water is stored in the alluvium near a river, offers a plausible option. To investigate this option, a coupled technical–administrative analysis was conducted to investigate the feasibility of alluvial ASR in the semi-arid US state of Colorado, where water rights are governed by the doctrine of prior appropriation. A hypothetical alluvial ASR facility near Brighton, Colorado with a storage capacity of 118,500 cubic meters (96 ac-ft) was considered. This analysis comprises both technical feasibility, using a groundwater model that explicitly accounts for clogging, and administrative feasibility, using a first-of-its-kind analysis of the legal availability of water including both free river and reusable effluent water. This coupled technical–administrative analysis suggests that alluvial ASR facilities present a viable option to meet rising demand for water storage, preventing water loss due to evaporation, reducing the effect of climate stress on water resources, and avoiding the need to purchase land for above-ground water storage facilities. More generally, this study illustrates the crucial importance of placing hydrologic analysis in the broader context of policy constraints.
机译:人口和气候变化的增加导致水管理者重新评估储水量。在这种情况下,冲积含水层的储存和回收(ASR)是一个可行的选择,在该冲积含水层的储存和回收中,多余的水被储存在河流附近的冲积层中。为了研究该方案,进行了一项技术-行政分析,以研究半干旱美国科罗拉多州冲积性ASR的可行性,在该州,水权受先前拨款原则支配。考虑了一个假设的冲积式ASR设施,位于科罗拉多州布赖顿附近,储存容量为118,500立方米(96 ac-ft)。该分析既包括技术可行性(使用明确解释了堵塞的地下水模型),也包括行政可行性(使用对包括自由河水和可再利用废水在内的水的法律可得性的首次分析)。这项技术与行政分析相结合,表明冲积性ASR设施是满足不断增长的储水需求,防止由于蒸发造成的水流失,减少气候压力对水资源的影响以及避免为土地购置土地而需要的可行选择。地下水储存设施。更广泛地说,这项研究说明了将水文分析置于政策限制的更广泛背景下的至关重要性。

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