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Controlling factors of wormhole growth in karst aquifers

机译:岩溶含水层虫洞生长的控制因素

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摘要

Flow and water discharge in karst aquifers are controlled by the conduit network. Therefore, understanding karst conduit formation is important to conjecture the aquifer topology, i.e., conduit density and size, and to predict the aquifer dynamics. Conduits are generated by preferential pathways to flow known as wormholes that grow competing with each other. The success of a wormhole is determined by its ability to drive water away from its neighbors. Once a wormhole forms, water tends to flow along this preferential path thus reducing the availability of water for the enlargement of less developed wormholes. Wormhole growth is then controlled by the flow rate, the dissolution mechanisms and the heterogeneity of the hydraulic conductivity field. In this work, we propose two conceptual models to describe the geometry of the wormhole capture zone and its effect on the surrounding wormholes. First, we consider a cross-section intersecting the wormhole longitudinally. Second, we consider a radial model centered in the wormhole. These models are representative of field (fracture) and laboratory (tube), respectively. We perform a series of steady state simulations to obtain the dependence of the capture zone on the wormhole’s geometry. This naturally leads to a relation between the wormhole’s geometry and the density of wormholes because only one wormhole grows within a capture zone.
机译:岩溶含水层的流量和排水量由导管网络控制。因此,了解岩溶导管的形成对于推测含水层的拓扑结构,即导管的密度和大小,以及预测含水层的动力学非常重要。管道是通过优先流动的途径产生的,这种途径被称为虫孔,它们相互竞争。虫洞的成功与否取决于其驱虫能力。一旦形成虫洞,水就倾向于沿着这种优先路径流动,从而减少了扩大不发达虫洞的水量。然后通过流速,溶解机理和水力传导率场的非均质性来控制蠕虫的生长。在这项工作中,我们提出了两个概念模型来描述虫洞捕获区的几何形状及其对周围虫洞的影响。首先,我们考虑一个与虫洞纵向相交的横截面。其次,我们考虑以虫洞为中心的径向模型。这些模型分别代表现场(裂缝)和实验室(管)。我们执行一系列稳态仿真,以获取捕获区对虫洞几何形状的依赖性。这自然会导致虫孔的几何形状与虫孔密度之间的关系,因为在捕获区域内仅会生长一个虫孔。

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