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Impact of coastal forcing and groundwater recharge on the growth of a fresh groundwater lens in a mega-scale beach nourishment

机译:沿海强迫与地下水充电对巨型海滩营养中新鲜地下水镜头增长的影响

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For a large beach nourishment called the Sand Engine - constructed in 2011 at the Dutch coast - we have examined the impact of coastal forcing (i.e. natural processes that drive coastal hydro-and morphodynamics) and groundwater recharge on the growth of a fresh groundwater lens between 2011 and 2016. Measurements of the morphological change and the tidal dynamics at the study site were incorporated in a calibrated three-dimensional and variable-density groundwater model of the study area. Simulations with this model showed that the detailed incorporation of both the local hydro-and morphodynamics and the actual recharge rate can result in a reliable reconstruction of the growth in fresh groundwater resources. In contrast, the neglect of tidal dynamics, land-surface inundations, and morphological changes in model simulations can result in considerable overestimations of the volume of fresh groundwater. In particular, wave runup and coinciding coastal erosion during storm surges limit the growth in fresh groundwater resources in dynamic coastal environments, and should be considered at potential nourishment sites to delineate the area that is vulnerable to salinization.
机译:对于一个叫做沙发的大型海滩营养 - 在荷兰海岸建造的2011年 - 我们已经研究了沿海强迫(即驱动沿海水流和形态学性的自然流程)和地下水之间的影响 - 新的地下水透镜之间的生长2011年和2016年研究现场的形态变化和潮汐动力学的测量纳入了研究区的校准的三维和可变密度地下水模型。使用该模型的模拟表明,局部水力学和形态学和实际充电率的详细融合可导致新的地下水资源的增长可靠地重建。相反,模拟模拟中的潮汐动力学,土地淹没和形态变化的忽视可能导致新鲜地下水的体积相当大的高度高度。特别是,风暴浪涌期间的波浪流浪和沿海侵蚀将新的地下水资源中的生长限制在动态沿海环境中,应考虑在潜在的营养场所,以描绘易受盐渍化的区域。

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