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INVERSE THREE–DIMENSIONAL GROUNDWATER MODELING USING THE FINITE–DIFFERENCE METHOD FOR RECHARGE ESTIMATION IN A GLACIAL TILL AQUITARD

机译:利用有限差分法对冰川平整含水层中的电荷进行逆向三维地下水建模

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摘要

Knowledge of groundwater recharge rates is essential for developing sustainable groundwater resources management schemes and for assessing the susceptibility of the groundwater system to contamination by leachable nutrients and toxic compounds such as nitrates and pesticides. This study was carried out to develop a method for estimating groundwater recharge in a glacial till aquitard using inverse groundwater modeling based on the USGS modular finite-difference groundwater model. The three-dimensional model incorporated the effects of the various hydrogeologic properties, such as hydraulic conductivity, specific yield, storage coefficient, and porosity, and hydrologic processes influencing recharge such as evapotranspiration and subsurface drainage. The model also accounted for the spatial variability of hydraulic conductivity in the oxidized and unoxidized layers based on geostatistical analysis. The groundwater model was calibrated and validated using years with adequate groundwater data. Inverse modeling was consequently performed using the calibrated model and simulation results yielded generally fair agreement between observed and calculated head distribution. Simulation results indicated that the annual net groundwater recharge for the five-year simulation period considered ranged from 18.7 mm/yr to 33.2 mm/yr, constituting approximately 2.3% to 4.3% of the annual precipitation in the area. The recharge estimates are within the typical range of recharge for the humid Midwest. The finite-difference model could serve as an alternative method for estimating groundwater recharge in a glacial till aquitard
机译:地下水补给率的知识对于制定可持续的地下水资源管理计划以及评估地下水系统对可溶营养物和有毒化合物(例如硝酸盐和农药)的污染的敏感性至关重要。进行了这项研究,以开发一种基于USGS模块化有限差分地下水模型的反演地下水模型来估算冰川至阿奎塔尔地区的地下水补给量的方法。三维模型综合了各种水文地质特性的影响,例如水力传导率,比产率,储能系数和孔隙度,以及影响补给的水文过程,例如蒸散和地下排水。该模型还根据地统计分析考虑了氧化层和非氧化层中水力传导率的空间变异性。使用多年的地下水数据对地下水模型进行了校准和验证。因此,使用校准后的模型进行了逆建模,并且模拟结果在观察到的和分配的水头分布之间产生了大致公平的一致性。模拟结果表明,所考虑的五年模拟期内的年净地下水补给量为18.7毫米/年至33.2毫米/年,约占该地区年降水量的2.3%至4.3%。补给估算值在中西部潮湿的典型补给范围内。有限差分模型可以作为估算冰川直至阿奎塔尔地区地下水补给量的替代方法

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