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Groundwater flow patterns in the San Luis Valley, Colorado, USA revisited: an evaluation of solute and isotopic data

机译:再探美国科罗拉多州圣路易斯谷的地下水流型:溶质和同位素数据的评估

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摘要

Groundwater systems in the San Luis Valley, Colorado, USA have been re-evaluated by an analysis of solute and isotopic data. Existing stream, spring, and groundwater samples have been augmented with 154 solute and isotopic samples. Based on geochemical stratification, three groundwater regimes have been identified within 1,200 m of the surface: unconfined, upper active confined, and lower active confined with maximum TDS concentrations of 35,000, 3,500 and 600 mg/L, respectively. The elevated TDS of northern valley unconfined and upper active confined systems result from mineral dissolution, ion exchange and methanogenesis of organic and evaporate lake sediments deposited in an ancient lake, herein designated as Lake Sipapu. Chemical evolutions along flow paths were modeled with NETPATH. Groundwater ages, and δ13C, δ2H and δ18O compositions and distributions, suggest that mountain front recharge is the principle recharge mechanism for the upper and lower confined aquifers with travel times in the northern valley of more than 20,000 and 30,000 14C years, respectively. Southern valley confined aquifer travel times are 5,000 14C years or less. The unconfined aquifer contains appreciable modern recharge water and the contribution of confined aquifer water to the unconfined aquifer does not exceed 20%.
机译:通过对溶质和同位素数据的分析,对美国科罗拉多州圣路易斯谷的地下水系统进行了重新评估。现有的溪流,泉水和地下水样品已增加了154种溶质和同位素样品。根据地球化学分层,已在地表1200 m范围内确定了三种地下水形态:无限制,上限活性物质限制和下限活性物质,最大TDS浓度分别为35,000、3,500和600 mg / L。北部山谷无约束系统和上部活动受限系统的TDS升高是由于矿物溶解,离子交换以及沉积在古代湖泊(此处称为西帕普湖)中的有机和蒸发湖泊沉积物的甲烷生成而导致的。使用NETPATH对沿流径的化学演化进行建模。地下水的年龄,δ13 C,δ2 H和δ18 O的组成和分布均表明,山前补给是上下承压含水层随时间推移的主要补给机制。北部谷地分别超过20,000和30,000 14 C年。南部山谷承压含水层的行进时间为5,000 14 C年或更短。该无限制含水层包含相当数量的现代补给水,并且该限制含水层水对该无限制含水层的贡献不超过20%。

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