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Observations and analytical modeling of freshwater and rainwater lenses in coastal dune systems

机译:沿海沙丘系统淡水和雨水镜片的观察与分析

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Observations are reported on (i) groundwater recharge rates under various types of vegetation as measured with megalysimeters in the dunes, (ii) freshwater lenses along the Dutch North Sea coast in the early 1900s, and (iii) rainwater lenses that develop on top of laterally migrating, artificially recharged riverwater. Subsequently analytical methods are presented to estimate annual natural groundwater recharge as function of rainfall and vegetation, and to calculate the size, shape and transition zone of freshwater lenses on saline groundwater and rainwater lenses on infiltrated riverwater. An empirical correction factor, based on the hydraulic resistance of an aquitard within the freshwater lens, is proposed to account for the frequently observed reduction of the Ghyben-Herzberg ratio of 40. This factor raises the groundwater table, reduces the depth of the fresh/salt interface and increases the lens formation time. The suite of methods offers a tool box for knowledge based water management of dune systems, by rapidly predicting: (i) more or less autonomous changes due to sealevel rise, climate change and vegetation development; and (ii) the potential (side) effects of interventions. Knowing what happened or will happen to the fresh water lens or a rainwater lens is important, because changes impact on important natural habitat parameters such as salinity, depth to groundwater table, decalcification rate (and thus on pH, Ca/Al, PO4, NH4) and nutrient availability, and on drinking water supply. The analytical models are applied to predict effects of sealevel rise, coastal progradation, vegetation changes, and increased temperature of coastal air and river water to be infiltrated.
机译:在20世纪初荷兰北海沿岸的DUNISimers下测量的各种类型的植被下的(i)地下水充电率下报(i)地下水补给率。(ii)沿着荷兰北海沿岸的淡水镜片,(iii)雨水镜片在顶部开发横向迁移,人工充电的河水。随后提出了分析方法以估算降雨量和植被的功能,并计算盐水地下水和雨水透镜上淡水镜片的尺寸,形状和过渡区。基于淡水透镜内的水力抗性的经验校正因子,旨在考虑常见观察到的Ghyben-Herzberg比例为40.该因子升高了地下水位,减少了新鲜/新鲜的深度盐界面并增加镜片形成时间。该套件提供了一个工具箱,用于迅速预测的沙丘系统的知识水管理:(i)由于海堤升起,气候变化和植被发展,或多或少的自主变化; (ii)干预措施的潜在(侧)效应。了解鲜水透镜或雨水镜头发生的事情是重要的,因为变化对重要的自然栖息地参数,如盐度,深度到地下水位,脱钙率(因此pH,Ca / Al,Po4,NH4 )和营养可用性,以及饮用水供应。分析模型适用于预测Sealevel上升,沿海促成,植被变化的影响,以及沿海航空和河流的温度增加。

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