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Effects of kinetic mass transfer and transient flow conditions on widening mixing zones in coastal aquifers

机译:动态传质和瞬变流动条件对沿海含水层拓宽混合区的影响

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摘要

The width of a mixing zone between freshwater and seawater is important primarily because it directly reflects the extent of mixing and the growth and decay of the mixing zone indicates changes of the flow regime and water exchange between freshwater and coastal seawater. Wide mixing zones have been found in many coastal aquifers all over the world. However, the mechanisms responsible for wide mixing zones are not well understood. This work examines the hypothesis that kinetic mass transfer coupled with transient conditions, which create the movement of the mixing zone, may widen mixing zones in coastal aquifers. The hypothesis is tested by conducting two-dimensional numerical simulations based on a variable-density groundwater model for a scaled-tank model and a field-scale model. Periodic water levels, representing periodic tidal motion and freshwater table fluctuations, are imposed at the seaward and landward boundary, respectively, which cause the movement of the mixing zone. Both the scaled-tank model and the field model show that the combination of the moving mixing zone and kinetic mass transfer may significantly enhance the extent of mixing and create a wider mixing zone than the models without kinetic mass transfer. In addition, sensitivity analyses indicate that a larger capacity ratio (immobile porosity/mobile porosity) of mass transfer leads to a wider mixing zone, and the maximum width of the mixing zone may be reached for a given capacity ratio when the mean retention time scale in the immobile domain (the reciprocal of mass transfer rate) and the period of water level fluctuations are comparable.
机译:淡水与海水之间的混合区域的宽度之所以重要,主要是因为它直接反映了混合的程度,并且混合区域的增长和衰落表明淡水与沿海海水之间的流态和水交换的变化。全世界许多沿海含水层中都发现了广泛的混合带。但是,对于宽混合区域的机理尚不十分了解。这项工作检验了以下假设:动量传递与瞬态条件共同作用,这会引起混合区的运动,从而可能加宽沿海含水层中的混合区。通过基于可变密度地下水模型(用于缩放水箱模型和田间规模模型)进行二维数值模拟来检验该假设。周期性的水位分别代表潮汐运动的周期性和淡水水位的波动,分别施加在海平面和海平面的边界上,这导致了混合区的运动。缩放水箱模型和现场模型都显示,与没有动态传质的模型相比,移动混合区和动态传质的结合可显着增强混合程度并创建更宽的混合区。此外,敏感性分析表明,传质的较大容量比(固定孔隙率/移动孔隙率)会导致混合区域变宽,并且在给定的容量比下,当平均保留时间标度达到时,混合区域的最大宽度可能会达到在固定范围内(传质速率的倒数)和水位波动的时期是可比的。

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  • 来源
    《Water resources research》 |2009年第12期|W12402.1-W12402.17|共17页
  • 作者单位

    School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0355, USA;

    Department of Civil and Environmental Engineering, Stanford University, Stanford, CA 94305-4020, USA;

    School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0355, USA;

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