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首页> 外文期刊>Journal of Hydrology >Use of stable isotopes to quantify flows between the Everglades and urban areas in Miami-Dade County Florida
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Use of stable isotopes to quantify flows between the Everglades and urban areas in Miami-Dade County Florida

机译:使用稳定同位素量化佛罗里达州迈阿密戴德县大沼泽地与市区之间的流量

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An isotopic study was performed to assess the movement of groundwater for a site located in Miami-Dade County, Florida. The site encompasses portions of a protected wetland environment (northeast Everglades National Park) and suburban residential Miami, incorporating municipal pumping wells and lakes formed by rock mining. Samples of ground, surface, and rainwater were analyzed for their isotopic composition (oxygen-18 and deuterium). Various analytical and graphical techniques were used to analyze this data and two conceptual box models were developed to quantify flows between different regions within the site. Results from this study indicate that the aquifer underlying the study site (the Biscayne aquifer) is highly transmissive with the exception of two semi-confining layers of reduced hydraulic conductivity. Everglades surface water infiltrates into the aquifer and migrates east toward residential areas. In these urban areas, 'shallow' groundwater (above the deeper semi-confining layer) is substantially affected by urban rainfall while 'deep' groundwater (below the deeper semi-confining layer) maintains a composition similar to that of Everglades water. Rock mining lakes in the area provide 'breaks' in the semi-confining layers that allow for mixing of shallow and deep groundwater. As water travels eastward, municipal well intakes, screened to a depth below the deeper semi-confining layer, draw upon not only shallow urban water (predominantly comprised of urban rainfall) and lake water (having influences from both urban rainfall and Everglades water) but also deep water that originated in the Everglades. Results from one of the box models estimate that over 60% of the water being removed by municipal pumping originated in the Everglades. These conclusions suggest that Everglades water, both directly through deep groundwater flow and indirectly through mixing with rock-mining lakes, is being drawn into the operating municipal wellfield. (C) 2004 Elsevier B.V. All rights reserved.
机译:进行了一项同位素研究,以评估位于佛罗里达州迈阿密戴德县的一块场地的地下水运动。该地点包括受保护的湿地环境(东北大沼泽国家公园)和迈阿密郊区住宅的部分区域,其中包括市政抽水井和由岩石开采形成的湖泊。分析了地面,地表和雨水的样品的同位素组成(18号氧气和氘)。使用了各种分析和图形技术来分析此数据,并开发了两个概念性的盒子模型来量化站点内不同区域之间的流量。这项研究的结果表明,研究地点下面的含水层(Biscayne含水层)具有很高的透射率,但两个半承压层的水力传导率却有所降低。大沼泽地表水渗入含水层并向东迁移到居民区。在这些城市地区,“浅”地下水(在较深的半限定层以上)受城市降雨的影响很大,而“较深”地下水(在较深的半限定层以下)的组成与大沼泽地的水相似。该地区的采石湖在半封闭层提供了“突破”,允许浅层和深层地下水混合。随着水向东移动,市政井口被过滤到较深的半限定层以下的深度,不仅汲取浅水(主要由城市降雨组成)和湖水(受城市降雨和大沼泽地水的影响),而且也来自大沼泽地的深水。一种盒式模型的结果估计,市政抽水去除的水有60%以上来自大沼泽地。这些结论表明,大沼泽地的水,既直接通过深层地下水流,又通过与岩石开采湖的混合间接地,都被吸入正在运行的市政井场。 (C)2004 Elsevier B.V.保留所有权利。

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