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首页> 外文期刊>Journal of the American Water Resources Association >CHARACTERIZATION OF GROUND WATER FLOW FROM SPRING DISCHARGE IN A CRYSTALLINE ROCK ENVIRONMENT
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CHARACTERIZATION OF GROUND WATER FLOW FROM SPRING DISCHARGE IN A CRYSTALLINE ROCK ENVIRONMENT

机译:结晶岩环境中弹簧放电对地下水流的表征

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Recent investigations describing the hydrogeology of the Blue Ridge Province of Virginia suggest the occurrence of multiple aquifers and flow paths that may be responsible for the variable flow behavior of springs and seeps appearing throughout the region. Deep, confined aquifers associated with ubiquitous faults and shallow, variably confined saprolite aquifers may contribute water to spring outlets resulting in significantly different quantities of discharge and water quality. Multiple analyses are required to adequately identify the flow paths to springs. In this investigation, hydrograph analyses, surface electrical resistivity surveys, aquifer tests, and nitrate concentrations are used in conjunction with previously reported analyses from borehole logs and age dating of ground water to identify two distinct flow paths. Results indicate that base flow occurs from a deep fault zone aquifer and such discharge can be maintained even during prolonged periods of drought, while increased discharge identified on hydrograph peaks suggests the occurrence of rapid flow through the saprolite aquifer within a radius of about 25 meters of the spring orifice. Springflow hydrograph analysis is suitable for rapid characterization of flow paths leading to spring outlets. Rapid characterization is important for evaluation of potential water quality problems arising from contamination of shallow and deep aquifers and for evaluation of water resource susceptibility to drought. The techniques evaluated here are suitable for use in other locations in fractured crystalline rock environments.
机译:最近对弗吉尼亚州蓝岭省水文地质现象的研究表明,存在多个含水层和流动路径,这可能是整个地区出现的泉水和渗水变化的水流行为的原因。与普遍存在的断层有关的深而密闭的含水层,以及浅薄而变化无常的腐泥土含水层,可能会给泉水出口贡献水,从而导致排放量和水质明显不同。需要进行多次分析才能充分识别弹簧的流路。在这项调查中,将水文图分析,地表电阻率调查,含水层测试和硝酸盐浓度与先前报道的来自钻孔测井和地下水年龄的分析结合使用,以识别两条不同的流动路径。结果表明,基流来自于深断层带含水层,即使在长期干旱期间也可以保持这种流量,而在水位图峰上发现的流量增加表明在大约25米半径内流过了腐泥土含水层的快速流量弹簧孔口。 Springflow水位图分析适用于快速表征通向弹簧出口的流路。快速表征对于评估浅层和深层含水层引起的潜在水质问题以及评估水资源对干旱的敏感性非常重要。本文评估的技术适用于在裂隙结晶岩环境中的其他位置使用。

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