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Coupling spatially distributed river and groundwater transport models to investigate contaminant dynamics at river corridor scales

机译:耦合空间分布的河流和地下水运输模型以研究河流走廊尺度的污染物动态

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摘要

Rivers and aquifers are mutually dependent components of the hydrological cycle, typically characterised by temporal dynamics that are a few orders of magnitude apart. This characteristic is often advocated to justify the use of independent single-system models to maximise the outcome for the available computational resources. However, the rapid increase in computational power presently provides means to explore new and more complex modelling schemes, which better reflect the complex physical reality. We present a new modelling framework, FLUXOS, developed from the full coupling of modified versions of state-of-the-art standalone river and groundwater flow and transport models. The model is validated against analytical solutions and applied to real world scenarios in the complex urban corridor of the Ciliwung River in Jakarta to show its flexibility for practical applications and its capabilities as an exploratory tool for realistic investigation of contamination sources and pathways determining nonlinear behaviours of river-aquifer interactions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:河流和含水层是水文循环中相互依存的组成部分,通常以时间动力学为特征,相距几个数量级。经常提倡使用此特性来证明使用独立的单系统模型以使可用计算资源的结果最大化。但是,计算能力的迅速提高目前为探索新的和更复杂的建模方案提供了手段,这些方案可以更好地反映复杂的物理现实。我们提出了一个新的建模框架FLUXOS,该框架是根据最新的独立河水和地下水流量与运输模型的修改版本的完全结合而开发的。该模型已通过分析解决方案验证,并应用于雅加达Ciliwung河复杂城市走廊中的真实世界场景,显示了其在实际应用中的灵活性以及作为对污染物源和途径进行现实调查的探索性工具的能力,从而确定了污染物的非线性行为。河流-含水层相互作用。 (C)2016 Elsevier Ltd.保留所有权利。

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