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Effects of alongshore morphology on groundwater flow and solute transport in a nearshore aquifer

机译:沿海形态对近岸含水层地下水流量和溶质运移的影响

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摘要

Variations of beach morphology in both the cross-shore and alongshore directions, associated with tidal creeks, are common at natural coasts, as observed at a field site on the east coast of Rarotonga, Cook Islands. Field investigations and three-dimensional (3-D) numerical simulations were conducted to study the nearshore groundwater flow and solute transport in such a system. The results show that the beach morphology, combined with tides, induced a significant alongshore flow and modified local pore water circulation and salt transport in the intertidal zone substantially. The bathymetry and hydraulic head of the creek enabled further and more rapid landward intrusion of seawater along the creek than in the aquifer, which created alongshore hydraulic gradient and solute concentration gradient to drive pore water flow and salt transport in the alongshore direction within the aquifer. The effects of the creek led to the formation of a saltwater plume in groundwater at an intermediate depth between fresher water zones on a cross-shore transect. The 3-D pore water flow in the nearshore zone was also complicated by the landward hydraulic head condition, resulting in freshwater drainage across the inland section of the creek while seawater infiltrating the seaward section. These results provided new insights into the complexity, intensity, and time scales of mixing among fresh groundwater, recirculating seawater and creek water in three dimensions. The 3-D characteristics of nearshore pore water flow and solute transport have important implications for studies of submarine groundwater discharge and associated chemical input to the coastal sea, and for evaluation of the beach habitat conditions.
机译:在库克群岛拉罗汤加东海岸的一个现场观察到,在自然海岸,与潮汐小溪相关的海滩形态在跨岸和沿岸方向的变化都很常见。进行了现场调查和三维(3-D)数值模拟,以研究这种系统中的近岸地下水流动和溶质运移。结果表明,海滩形态与潮汐相结合,引起潮间带显着的沿岸水流,并改变了局部孔隙水的循环和盐分运移。小溪的水深和水力压头使海水沿着小溪比在含水层中进一步更快地向陆地侵入,从而形成了沿岸的水力梯度和溶质浓度梯度,从而推动了孔隙水的流动和盐分在含水层中沿沿岸方向的迁移。这条小溪的影响导致在跨岸样带的淡水区域之间的中间深度处的地下水中形成了盐水羽流。近岸区域的3-D孔隙水流也由于陆上水头状况而变得复杂,导致淡水在整个小河内陆区域流失,而海水则渗透到该海陆区域。这些结果为三个方面的新鲜地下水,循环海水和小溪水混合的复杂性,强度和时间尺度提供了新的见解。近岸孔隙水流动和溶质运移的3-D特征对于海底地下水排放和相关化学物质向沿海海域的研究以及对海滩栖息地条件的评估具有重要意义。

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