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Demonstration of Sustainable Development of Groundwater through Aquifer Storage and Recovery (ASR)

机译:通过含水层储存和恢复(ASR)的地下水可持续发展示范

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摘要

Sustained pumping of groundwater can lead to declining water levels in wellfields and concerns regarding the sustainability of groundwater resources. Aquifer Storage and Recovery (ASR) is a promising approach for maintaining water levels in wells and increasing the sustainability of groundwater resources. Herein, an analytical model relying on superposition of the Theis equation is used to resolve water levels at 40 wells in three vertically stacked ASR wellfields operating in the Denver Basin Aquifers, Colorado (USA). Fifteen years of dynamic recovery/recharge data are used to estimate aquifer and well properties, which are then used to predict water levels at individual wells. Close agreement between modeled and observed water levels supports the validity of the analytical model for ASR wellfield applications. During the study period, 45 million m(3) of groundwater is produced and 11 million m(3) is recharged, leading to a net withdrawal of 34 million m(3) of groundwater. To quantify the benefits of recharge, the analytical model is applied to predict water levels at wells absent the historical recharge. Results indicate that during recovery and no-flow periods, recharge has increased water levels at wells up to 60 m compared to the no-recharge scenario. On average, the recharge increased water levels during the study period by 3, 4, and 11 m for wells in the Denver, Arapahoe, and Laramie Fox-Hills Aquifers, respectively. This study demonstrates the utility of analytical modeling to quantify the effects of long-term ASR at wells.
机译:地下水的持续泵浦可能导致井场的水平下降和对地下水资源可持续性的担忧。含水层存储和恢复(ASR)是维持水平井中水平的有希望,并提高地下水资源的可持续性。在此,依赖于THEIS方程叠加的分析模型用于在三个垂直堆叠的ASR孔场中在丹佛盆地含水层(USA)的三个垂直堆叠的ASR孔场中的40个井中的水位。十五年的动态恢复/充电数据用于估计含水层和井属性,然后用于预测各个井的水位。建模和观测的水位之间的近距离协议支持ASR Wellfield应用程序的分析模型的有效性。在研究期间,生产了4500万米(3)米(3)个地下水,收回1100万米(3)米(3),导致3400万米(3)个地下水的净取款。为了量化充值的益处,分析模型用于预测井中的水位缺乏历史充电。结果表明,在恢复和无流动期间,与No-Recharge情景相比,再充电在井中的水位增加了60米。平均而言,在丹佛,阿拉帕索和拉拉姆福克斯山含水层的井中的研究期间,研究期间的水平增加了3,4和11米。本研究表明了分析模型的效用,以量化井中的长期ASR的影响。

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