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首页> 外文期刊>Journal of Environmental Engineering >TWO-DIMENSIONAL HYDRAULICS OF RECIRCULATING GROUND-WATER REMEDIATION WELLS IN UNCONFINED AQUIFERS
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TWO-DIMENSIONAL HYDRAULICS OF RECIRCULATING GROUND-WATER REMEDIATION WELLS IN UNCONFINED AQUIFERS

机译:承压含水层中循环地下水修复井的二维水力

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摘要

A technique for remediating and protecting ground-water and drinking-water wells from contamination is presented. A ground-water remediation well design is proposed in which ground water is drawn into the well bottom, treated in the well casing, and returned clean to the aquifer at the well top. The hydraulics of ground-water circulation around imperfectly penetrating wells were examined experimentally in pilot-scale tanks and mathematically with numerical models in a two-dimensional domain. Ambient ground-water velocities of from 1 to 3 m/day, typical for coarse sand and gravel aquifers, were simulated in combination with in-well vertical velocities of from 2 to 16 m/day. Under some of these flow conditions, contaminants were intercepted and drawn into the wells for treatment. Hydraulic problems identified with the experimental apparatus and simulated by the computer models included blow through of contaminant at the well intake by high ambient ground-water velocities and submergence by the well hydraulics of surface contaminant plumes without interception. Both types of problems were corrected by adjusting internal well velocities. Important design parameters include ambient ground-water velocity and well pumping rate. [References: 16]
机译:提出了一种修复和保护地下水和饮用水井免受污染的技术。提出了一种地下水修复井设计,其中将地下水吸入井底,在井套管中进行处理,然后干净地返回井顶的含水层。在中试规模的储罐中实验性检验了渗透不良的井周围的地下水循环水力学,并在二维域内用数值模型进行了数学计算。结合2至16 m / day的井内垂直速度,模拟了典型的粗砂和砾石含水层的1至3 m / day的环境地下水速度。在某些流动条件下,污染物被拦截并被吸入井中进行处理。用实验设备识别并通过计算机模型模拟的水力问题包括:由于周围环境地下水的高流速,井口处的污染物被吹穿,表面污染物羽流的井眼液压装置淹没而没有截留。通过调整内部井速可以纠正这两种类型的问题。重要的设计参数包括周围的地下水流速和抽水速率。 [参考:16]

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