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Laboratory and numerical investigation of transport processes occurring above and within a saltwater wedge

机译:在盐水楔上方和内部进行的运输过程的实验室和数值研究

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Salt wedges divide coastal groundwater flow regime into two distinct regions that include a freshwater region above the saltwater-freshwater interface and a saltwater region below the interface. Several recent studies have investigated saltwater transport in coastal aquifers and the associated flow and mixing processes. Most of these studies, however, have either focused on studying the movement of salt wedge itself or on studying contaminant transport processes occurring above the wedge. As per our knowledge, so far no one has completed laboratory experiments to study contaminant transport processes occurring within a saltwater wedge. In this study, we completed laboratory experiments to understand contaminant transport dynamics occurring within a saltwater wedge. We used a novel experimental approach that employed multiple neutral-density tracers to map and compare the mixing and transport processes occurring above and within a saltwater wedge. The experimental data were simulated using SEAWAT, and the model was used to further investigate the saltwater flow and transport dynamics within a wedge. The laboratory data show that the transport rates active within the wedge are almost two orders of magnitude slower than the transport rates active above the wedge for the small-scale experimental system which is characterized by very low level of mixing. The numerical results, however, postulate that for large-scale systems involving higher levels of mixing (or dispersion) the transport rate active within the wedge could be comparable or even higher than the rates active above the wedge. More field or laboratory studies completed under high dispersion conditions are needed to further test this hypothesis.
机译:盐楔将沿海地下水流动状况分为两个不同的区域,包括盐水-淡水界面上方的淡水区域和界面下方的盐水区域。最近的一些研究调查了沿海含水层中的盐水运输以及相关的水流和混合过程。然而,大多数这些研究要么集中于研究盐楔本身的运动,要么研究盐楔上方发生的污染物迁移过程。据我们所知,到目前为止,还没有人完成实验室实验来研究咸水楔内发生的污染物迁移过程。在这项研究中,我们完成了实验室实验,以了解盐水楔块内发生的污染物迁移动力学。我们使用了一种新颖的实验方法,该方法采用了多个中性密度示踪剂来绘制和比较盐水楔块上方和内部发生的混合和运输过程。使用SEAWAT模拟了实验数据,并使用该模型进一步研究了楔形区内的盐水流动和输送动力学。实验数据表明,楔形内部有效的传输速率比小规模实验系统的楔形上方有效的传输速率慢了两个数量级,该系统的特点是混合水平非常低。然而,数值结果假定,对于涉及更高水平的混合(或分散)的大规模系统,楔形内部的有效传输速率可以与楔形上方的有效传输速率相当甚至更高。需要在高分散条件下完成更多的现场或实验室研究,以进一步检验该假设。

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