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首页> 外文期刊>Advances in Water Resources >Transport pathway identification in fractured aquifers: A stochastic event synchrony-based framework
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Transport pathway identification in fractured aquifers: A stochastic event synchrony-based framework

机译:裂缝含水层中的运输路径鉴定:基于随机事件同步的框架

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Several approaches are commonly applied to modeling fractured aquifers, including stochastic continuum (SC) and discrete fracture network (DFN) models. While DFN models provide a more realistic representation of the system, their development necessitates an accurate characterization of the fracture network. Extensive, and often prohibitive, resources are typically required to map a reliable fracture network, which is essential to develop an effective DFN model. The present study develops and demonstrates a simple framework for mapping transport pathways in fractured systems utilizing the coherence between solute transport and the lagged interdependence between two time series evaluated through the stochastic event synchrony (SES) technique. The SES-based framework was applied to solute breakthrough curves obtained i) analytically at different locations along a single, synthetic fracture both with and without matrix diffusion; and, ii) numerically at multiple locations within a synthetic, impervious fracture network. In all cases, the framework was capable of accurately mapping the transport pathways represented by direct pathes between the locations considered. The framework was also capable of identifying the hydrogeologic characteristics within each connection (i.e., flow velocity or its relationship to the dispersion coefficient). This framework is expected to significantly reduce the extensive resources required to identify the transport pathways within complex fractured aquifers. Additionally, the SES-based transport pathways identified may be used to enhance the reliability of other fracture network mapping, or generation, approaches by representing an additional constraint. This study is the first in the field of hydrogeology to adopt synchronization analysis and is expected to open the gate for using SES to address related problems
机译:几种方法通常适用于建模骨折含水层,包括随机连续体(SC)和离散裂缝网络(DFN)模型。虽然DFN模型提供了系统的更现实的表示,但它们的发展需要准确地表征裂缝网络。广泛,通常是禁止的资源,通常需要映射可靠的裂缝网络,这对于开发有效的DFN模型至关重要。本研究开发并演示了一种简单的框架,用于利用溶质运输和通过随机事件同步(SES)技术评估的两次序列之间的滞留相互依存之间的裂缝系统中的裂缝系统中的传输途径。基于SES的框架被应用于在沿着单一的合成骨折的不同位置分析在不同的位置溶质曲线曲线,既有矩阵扩散一样;并且,II)在合成,不透水骨折网络中的多个位置处。在所有情况下,该框架能够精确地映射由所考虑的位置之间的直接路径表示的传输途径。该框架还能够识别每个连接内的水文地质特性(即,流速或与分散系数的关系)。该框架预计将显着降低识别复杂骨折含水层内的运输途径所需的广泛资源。另外,通过代表附加约束,可以使用所识别的基于基于SES的传输途径来增强其他裂缝网络映射或产生方法的可靠性。本研究是水文地质领域的第一个采用同步分析,预计将打开门用于使用SES解决相关问题

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