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首页> 外文期刊>Houille Blanche >3D modeling of a complex alluvial aquifer for efficient management - application to the lower valley of Var river, France
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3D modeling of a complex alluvial aquifer for efficient management - application to the lower valley of Var river, France

机译:用于高效管理的复杂冲积含水层的3D建模-在法国瓦尔河下游河谷的应用

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摘要

Complex alluvial aquifers are frequently essential resources for cities that are looking for reliable and safe resources for water supply. The location of such aquifers is frequently combined with intense urban developments that may, potentially, generate pollutants that could affect badly the quality of the resources. An efficient and safe management of water supply system requests to develop a good knowledge of the dynamics of the aquifer and to characterize the exchanges that could exist with free surface flows in associated rivers. The most efficient way to understand the behaviour of the aquifer is to implement a 3D physically-based hydrodynamic model that could represent all physical processes. However, this approach, in order to become an operational tool, requests a structured methodology for data integration and validation. The paper describes the construction of a 3D hydraulic model of groundwater flow in the Var lower valley, on the French Riviera, with FEFLOW modeling system. Despite a very complex geological structure and a limited knowledge on the aquifer itself, the results demonstrate that the model is able to represent the groundwater flows over long chronologies and to provide an accurate diagnostic on various hydraulic structures that are affecting negatively the aquifer conservation.
机译:对于那些寻求可靠,安全的供水资源的城市来说,复杂的冲积含水层通常是必不可少的资源。此类含水层的位置经常与密集的城市发展相结合,这可能会产生可能严重影响资源质量的污染物。高效,安全的供水系统管理要求发展对含水层动力学的深入了解,并表征与相关河流中的自由面流可能存在的交换。理解含水层行为的最有效方法是实施可表示所有物理过程的基于3D物理的水动力模型。但是,这种方法为了成为一种操作工具,需要一种用于数据集成和验证的结构化方法。本文介绍了使用FEFLOW建模系统在法国里维埃拉的瓦尔河下游山谷中建立地下水流的3D水力模型的方法。尽管地质结构非常复杂,对含水层本身的了解有限,但结果表明,该模型能够代表长期以来的地下水流,并能够对对水层保护产生不利影响的各种水力结构提供准确的诊断。

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