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Numerical modeling and sensitivity analysis of seawater intrusion in a dual-permeability coastal karst aquifer with conduit networks

机译:用管道网络双渗透性沿海喀斯特含水层海水侵扰的数值建模与敏感性分析

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Long-distance seawater intrusion has been widely observed through the subsurface conduit system in coastal karst aquifers as a source of groundwater contaminant. In this study, seawater intrusion in a dual-permeability karst aquifer with conduit networks is studied by the two-dimensional density-dependent flow and transport SEAWAT model. Local and global sensitivity analyses are used to evaluate the impacts of boundary conditions and hydrological characteristics on modeling seawater intrusion in a karst aquifer, including hydraulic conductivity, effective porosity, specific storage, and dispersivity of the conduit network and of the porous medium. The local sensitivity analysis evaluates the parameters' sensitivities for modeling seawater intrusion, specifically in the Woodville Karst Plain (WKP). A more comprehensive interpretation of parameter sensitivities, including the nonlinear relationship between simulations and parameters, and/or parameter interactions, is addressed in the global sensitivity analysis. The conduit parameters and boundary conditions are important to the simulations in the porous medium because of the dynamical exchanges between the two systems. The sensitivity study indicates that salinity and head simulations in the karst features, such as the conduit system and submarine springs, are critical for understanding seawater intrusion in a coastal karst aquifer. The evaluation of hydraulic conductivity sensitivity in the continuum SEAWAT model may be biased since the conduit flow velocity is not accurately calculated by Darcy's equation as a function of head difference and hydraulic conductivity. In addition, dispersivity is no longer an important parameter in an advection-dominated karst aquifer with a conduit system, compared to the sensitivity results in a porous medium aquifer. In the end, the extents of seawater intrusion are quantitatively evaluated and measured under different scenarios with the variabilities of important parameters identified from sensitivity results, including salinity at the submarine spring with rainfall recharge, sea level rise, and a longer simulation time under an extended low rainfall period.
机译:通过沿海喀斯特含水层的地下导管系统被广泛观察到远程海水入侵,作为地下水污染物的来源。在本研究中,通过二维密度依赖性流动和运输海南模型研究了带导管网络的双渗透性喀斯特含水层的海水侵入。本地和全局敏感性分析用于评估边界条件和水文特性对喀斯特含水层中海水侵入的影响,包括导管网络和多孔介质的液压导电性,有效孔隙率,特异性储存和分散性。局部敏感性分析评估了用于建模海水侵入的参数敏感性,特别是在Woodville喀斯特平原(WKP)中。在全局敏感性分析中解决了对参数敏感性的更全面的参数敏感性,包括模拟和参数和/或参数交互之间的非线性关系。由于两种系统之间的动态交换,导管参数和边界条件对多孔介质的模拟非常重要。灵敏度研究表明,岩溶特征(如导管系统和潜艇弹簧)的盐度和头部模拟对于了解沿海喀斯特含水层中的海水侵入至关重要。由于达西的方程作为头部差和液压导电性的函数,因此可以偏置连续南部模型中的液压导电性灵敏度的评估可以偏置,因为达西方程不是准确地计算的。此外,与多孔介质含水层的敏感性相比,分散性不再具有导管系统的平面主导的喀斯特含水层中的重要参数。最后,海水入侵的范围是定量评估的,并在不同的情况下测量并测量从敏感性结果中鉴定的重要参数的变形性,包括潜艇弹簧的盐度,具有降雨充电,海平面上升和更长的模拟时间降雨量低。

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