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首页> 外文期刊>Journal of Hydrology >Identification of localised recharge and conduit flow by combined analysis of hydraulic and physico-chemical spring responses (Urenbrunnen, SW-Germany)
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Identification of localised recharge and conduit flow by combined analysis of hydraulic and physico-chemical spring responses (Urenbrunnen, SW-Germany)

机译:通过对水力和物理化学弹簧响应的组合分析来识别局部补给和导管流量(Urenbrunnen,德国西南)

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Karst aquifers are highly vulnerable to contamination due to the rapid transport of pollutants in conduit systems. Effective strategies for the management and protection of karst aquifers, therefore, require an adequate hydrogeological characterisation of the conduit systems. In particular, the identification and characterisation of conduits transmitting rapid, localised recharge to springs is of great interest for vulnerability assessments. In this work, it is demonstrated that localised recharge and conduit flow in a karst aquifer (Urenbrunnen catchment, southwest Germany) can be characterised by jointly analysing the hydraulic and physico-chemical responses of a spring to recharge events. Conduit volumes are estimated by evaluating time lags between increases in spring discharge and associated changes in the electrical conductivity and temperature of the discharged water. These estimates are confirmed by the results of a combined tracer and recharge test. Variations in electrical conductivity are also shown to assist in the quantification of the fast recharge component associated with short-term recharge pulses. However, spectral analysis of temperature fluctuations reveals that highly mineralised surface waters locally infiltrate into the aquifer during the winter and spring without causing significant electrical conductivity variations in the spring water. Hence, the most consistent conceptual model is obtained by a combined analysis of both physico-chemical parameters. (C) 2003 Elsevier B.V. All rights reserved. [References: 35]
机译:由于管道系统中污染物的快速运输,岩溶含水层极易受到污染。因此,管理和保护岩溶含水层的有效策略要求对导管系统进行充分的水文地质表征。尤其是,将快速,局部补给传递到弹簧的导管的识别和特征对于脆弱性评估非常重要。在这项工作中,证明了可以通过共同分析弹簧对补给事件的水力和理化响应来表征岩溶含水层(德国西南部的Urenbrunnen流域)中的局部补给和导管流动。通过评估弹簧排放量的增加与排放水的电导率和温度的相关变化之间的时间间隔来估算导管的体积。这些估计值由示踪剂和补给测试相结合的结果证实。还显示出电导率的变化有助于量化与短期充电脉冲相关的快速充电分量。然而,对温度波动的频谱分析表明,在冬季和春季,高度矿化的地表水局部渗入含水层,而不会在泉水中引起明显的电导率变化。因此,通过对两个物理化学参数的组合分析获得了最一致的概念模型。 (C)2003 Elsevier B.V.保留所有权利。 [参考:35]

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