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Infiltration mechanism simulation of artificial groundwater recharge: a case study at Pingtung Plain, Taiwan

机译:人工地下水补给入渗机理模拟-以台湾屏东平原为例

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This paper discusses the artificial groundwater recharge effect of high-infiltration basins. For this purpose, the hydrogeological parameters of the study area are collected to construct a conceptualized physical model. The TOUGH2 numerical simulation software is then used to simulate the infiltration behavior of an artificial recharge into an underground aquifer. Four wells (MW-1, MW-2, MW-3, and MW-4) are observed at the field site, after which the groundwater levels are compared with the simulation results. It is found that good agreement exists between the observed and numerical data for MW-1 and MW-2. However, the observed groundwater level in MW-3 is higher than the simulated level. We also find that MW-3 is at the edge of the artificial recharge lake, and that the high groundwater level may well be the result of a portion of the infiltration load following the well border into the well screen. Conversely, the groundwater level in MW-4 is found to be lower than in the simulated well due to local permeability in the well location. Finally, the numerical results predict that the groundwater level will attain a steady state at approximately 47 h after the onset of infiltration.
机译:本文讨论了高渗盆地的人工地下水补给作用。为此,收集研究区域的水文地质参数以构建概念化的物理模型。然后,使用TOUGH2数值模拟软件来模拟人工补给入地下含水层的渗透行为。在野外现场观察到四口井(MW-1,MW-2,MW-3和MW-4),然后将地下水位与模拟结果进行比较。发现在MW-1和MW-2的观测数据与数值数据之间存在良好的一致性。但是,在MW-3中观测到的地下水位高于模拟水位。我们还发现MW-3位于人工补给湖的边缘,地下水水位高很可能是由于井边界进入井网之后一部分渗透负荷的结果。相反,由于井位的局部渗透性,发现MW-4中的地下水水位低于模拟井。最后,数值结果表明,入渗开始后大约47小时,地下水位将达到稳定状态。

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