首页> 外文期刊>Journal of Hydrology >Rainwater lens dynamics and mixing between infiltrating rainwater and upward saline groundwater seepage beneath a tile-drained agricultural field
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Rainwater lens dynamics and mixing between infiltrating rainwater and upward saline groundwater seepage beneath a tile-drained agricultural field

机译:地砖排水农田下的雨水透镜动力学和渗透雨水与向上的盐水渗漏之间的混合

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Thin rainwater lenses (RW-lenses) near the land surface are often the only source of freshwater in agricultural areas with regionally-extensive brackish to saline groundwater. The seasonal and inter-annual dynamics of these lenses are poorly known. Here this knowledge gap is addressed by investigating the transient flow and mixing processes in RW-lenses beneath two tile-drained agricultural fields in the Netherlands. Evidence of RW-lens dynamics was systematically collected by monthly ground- and soil water sampling, in combination with daily observations of water table elevation, drain tile discharge and drain water salinity. Based on these data, and numerical modeling of the key lens characteristics, a conceptual model of seasonal lens dynamics is presented. It is found that variations in the position of the mixing zone and mixing zone salinities are small and vary on a seasonal timescale, which is attributed to the slow transient oscillatory flow regime in the deepest part of the lens. The flow and mixing processes are faster near the water table, which responds to recharge and evapotranspiration at a timescale less than a day. Variations of drain tile discharge and drain water salinity are also very dynamic as they respond to individual rain events. Salinities of soil water can become significantly higher than in the groundwater. This is attributed to the combined effect of capillary rise of saline groundwater during dry periods and incomplete flushing by infiltrating freshwater due to preferential flow through cracks in the soil. The results of this study are the key to understanding the potential impact of future climate change and to designing effective mitigating measures such as adapting tile-drainage systems to ensure the future availability of freshwater for agriculture.
机译:土地表面附近的薄雨水透镜(RW透镜)通常是咸淡的咸水在农业地区普遍存在的农业地区的唯一淡水来源。这些镜片的季节和年际动态知之甚少。在这里,通过研究荷兰两个瓷砖排水的农田下面的RW透镜的瞬态流动和混合过程,可以解决这一知识差距。通过每月对地下水和土壤水的采样,结合每日对地下水位高低,排水瓦排放和排水盐度的每日观测,系统地收集了RW透镜动力学的证据。基于这些数据以及关键镜片特性的数值模型,提出了季节性镜片动力学的概念模型。发现混合区的位置和混合区盐度的变化很小,并且在季节性时间尺度上变化,这归因于晶状体最深部分的缓慢瞬态振荡流动状态。地下水位附近的流动和混合过程更快,它可以在不到一天的时间内响应补给和蒸散作用。排水瓦排放和排水盐度的变化也非常动态,因为它们会响应各个降雨事件。土壤水的盐度可能明显高于地下水中的盐度。这归因于干旱时期盐碱地下水毛细上升和由于优先流过土壤裂缝而渗入淡水而导致冲洗不彻底的综合作用。这项研究的结果是理解未来气候变化的潜在影响以及设计有效的缓解措施(例如调整瓷砖排水系统以确保未来农业淡水供应)的关键。

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