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首页> 外文期刊>Journal of South American earth sciences >Identification of the components of a complex groundwater flow system subjected to intensive exploitation
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Identification of the components of a complex groundwater flow system subjected to intensive exploitation

机译:识别经过大量开采的复杂地下水流系统的组成部分

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摘要

The Mexico City region, like many other densely populated regions in the world, has problems in guaranteeing the supply of drinking water to its inhabitants. Its groundwater flow system is subject to intensive exploitation. To ensure proper water management, it is important to understand the behavior of groundwater flow system components under conditions of intensive exploitation. In this study, we analyzed 169 samples from drinking water supply wells, according to their chemistry. The principal components of the flow system were inferred using exploratory statistical analysis and analysis of the mixture of the end-members of the hydrochemical dataset. Four components were identified: (1) waters of recent infiltration and local circulation, (2) waters with evidence of intermediate chemical evolution, (3) waters that are chemically more evolved and of large flow trajectories, (4) waters that are chemically more evolved and of deep circulation. A relationship between the components, the structural geology, and the recharge zones was established. The mixing proportion of the four components in each water sample extracted from drinking water wells was identified. It was observed that the faults and the design of screened section of the well tubes influenced the mixtures captured by the wells. The impact generated by the intensive exploitation with respect to the distribution of the components within the flow system was evaluated.
机译:像世界上许多其他人口稠密的地区一样,墨西哥城地区在保障向其居民提供饮用水方面也存在问题。其地下水流系统需要大量开发。为了确保适当的水管理,重要的是要了解在集约化开采条件下地下水流系统各组成部分的行为。在这项研究中,我们根据饮用水的化学成分分析了169个饮用水井的样品。使用探索性统计分析和对水化学数据集末端成员的混合物进行分析,得出流动系统的主要组成部分。确定了四个组成部分:(1)最近渗入和局部循环的水,(2)具有中间化学演化迹象的水,(3)化学演化程度更高且流动轨迹较大的水,(4)化学渗透程度较高的水进化而深循环。建立了组件,结构地质和补给区之间的关系。确定了从饮用水井提取的每个水样品中四种成分的混合比例。观察到,断层和井管筛分部分的设计影响了井收集的混合物。评估了密集开发对流动系统中的组件分布产生的影响。

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