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首页> 外文期刊>Fresenius Environmental Bulletin >MODELING CONTAMINANT PROPAGATION IN A FRACTURED AND KARSTIC AQUIFER
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MODELING CONTAMINANT PROPAGATION IN A FRACTURED AND KARSTIC AQUIFER

机译:模拟破裂和岩溶含水层中的污染物传播

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Modeling flow and transport of pollutants in fractured and karstic aquifers remains an open issue. In fact, a completely adequate model for them has not been developed. These aquifers are highly vulnerable to groundwater contamination. Karst conduit system permits a rapid transport of pollutants, often under turbulent conditions and traveling long distances. Moreover, the cavities filled by residual dissolution products delay the propagation of contamination principally by means of sorption processes. The classical equivalent porous model paradigm does not permit to take into account the discrete nature of these aquifers.rnIn this context, the reconstruction of a detailed geological model is very important in order to extend the knowledge on fluid flow and solute transport phenomena. This permits, consequently, to choose a plausible conceptual model with state variables and boundary conditions more adequate than the classical equivalent porous approach.rnThe present work studies the area of an ex Gasometer heavily contaminated by hydrocarbons. In this area, a pump & treat system has been designed approximating the nature of aquifer to a homogeneous isotropic porous medium. The work focuses on the importance of the realization of a detailed geological reconstruction to be implemented in a flow and transport model in order to interpret the dynamics of the flow field and the transport of contamination.rnThe obtained results have proven to be coherent with previous studies in that they show that the flow field and the transport of contaminants depend primarily on karst network architecture.
机译:对裂缝性和岩溶含水层中污染物的流量和迁移进行建模仍然是一个未解决的问题。实际上,还没有为他们开发出完全合适的模型。这些含水层极易受到地下水污染。岩溶导管系统通常在湍流条件下和长距离行驶时允许污染物的快速运输。此外,残留溶解产物填充的空腔主要通过吸附过程来延迟污染物的传播。经典等效多孔模型范式不允许考虑这些含水层的离散性质。在这种情况下,为了扩展关于流体流动和溶质运移现象的知识,详细的地质模型的重建非常重要。因此,与经典的等效多孔方法相比,这允许选择一个状态变量和边界条件更合理的概念模型。本工作研究了一个被碳氢化合物严重污染的防爆煤气表的面积。在该区域,已经设计了一种泵和处理系统,该系统将含水层的性质近似于均质各向同性的多孔介质。这项工作的重点是实现详细的地质重建的重要性,该地质重建要在流动和运输模型中进行,以解释流场和污染物运输的动力学。rn所获得的结果已证明与先前的研究一致因为它们表明流场和污染物的输送主要取决于岩溶网络架构。

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