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首页> 外文期刊>Hydrogeology journal >Karst flow processes explored through analysis of long-term unsaturated-zone discharge hydrochemistry: a 10-year study in Rustrel, France
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Karst flow processes explored through analysis of long-term unsaturated-zone discharge hydrochemistry: a 10-year study in Rustrel, France

机译:通过分析长期不饱和区放电水化学来探索的岩溶流程:法国Rustel的10年学习

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The unsaturated zone of karst aquifers influences the dynamics and the chemistry of water. Because of a lack of direct access, other than via caves, flows in the aquifer matrix and the smallest conduits remain poorly characterized. The few artificial underground structures in the unsaturated karst provide a rare opportunity to study the variety of flow processes. At the low noise underground research laboratory (Laboratoire Souterrain a Bas Bruit, LSBB) in Rustrel (France), 12 variables (temperature, pH, electrical conductivity, alkalinity, major anions and cations, total organic carbon) have been monitored on 12 perennial or temporary flows and leakages over a 10-year period covering contrasting climatic periods. This unique dataset of 1,135 samples has been used to discriminate, identify, and rank the processes associated with the hydrochemical variability of these different types of flows. A principal component analysis and a hierarchical cluster analysis, using mean values and standard deviation of the flow along the principal components, were performed. The results indicate that seasonal variability, mean water residence time, and the depth of acquisition of the chemical characteristics are the main factors of the variability of chemistry at the monitored flow points. Distinguished clusters highlight the great diversity of flows and processes occurring in the fine pathways that may be neighboring the large and structured fractures and conduits. Long-term monitoring with various climatic conditions appears to be a useful tool for assessing this diversity.
机译:喀斯特含水层的不饱和区会影响水的动态和水化学。由于缺乏直接进入,除了通过洞穴,含水层矩阵中的流动和最小的导管仍然很差。不饱和喀斯特的几个人工地下结构提供了研究各种流程过程的难得机会。在高噪声地下研究实验室(法国)在Rustrel(法国)中的低噪声地下研究实验室(Laboratoire Souterain A Bas Bruit,LSBB),12个多年生或12个变量(温度,pH,导电性,碱度,总有机碳,总有机碳)。临时流动和泄漏超过10年的期间涵盖对比气相。这个独特的数据集是1,135个样本的用于区分,识别和排列与这些不同类型流的水化学变异相关的过程。进行主要成分分析和使用沿着主组件的流量的平均值和标准偏差的分层聚类分析。结果表明,季节性变异性,平均水停留时间和化学特性的获取深度是所监测流量的化学变异性的主要因素。凝聚的簇突出了在可以邻近大型和结构裂缝和导管的细途径中发生的巨大流动和过程的巨大多样性。具有各种气候条件的长期监测似乎是评估这种多样性的有用工具。

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