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Simulating Nitrate Leaching Profiles In A Highly Permeable Vadose Zone

机译:模拟高渗透性渗流区内的硝酸盐浸出曲线

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An approach is developed to simulate leaching of a dissolved chemical constituent in the vadose zone of an aquifer. Specifically, nitrate loading at the water table for different water table depths, for a range of aquifer permeability values, and for different cases of heterogeneity of the aquifer, are considered. Models from the literature are first used to derive soil-water characteristic curves (water retention and hydraulic conductivity) from a grain size distribution curve for unsaturated conditions. Given infiltration from the surface, the initial conditions for the chemical concentration, and the water content profile, leaching of the chemical in the vadose zone is simulated as a function of both time and depth. The methodology is illustrated for a permeable aquifer. Simulations are undertaken using a finite element code for saturated and unsaturated flow. Different scenarios are simulated depending on the heterogeneity of the aquifer and the depth of the water table. Modeling results show that in the example case studied, nitrate concentration loading at the water table does not depend strongly on the position of the water table, but rather on the material properties of the aquifer. The contribution of this endeavor resides in the methodology which allows a prediction of nitrate leaching using only the grain size property of the aquifer. It allows practitioners to obtain a first assessment of leaching with limited data.
机译:开发了一种方法来模拟在含水层渗流带中溶解的化学成分的浸出。具体地,考虑了针对不同水位深度,一定范围的含水层渗透率值以及针对含水层的非均质性的不同情况在地下水位处的硝酸盐负荷。文献中的模型首先用于从非饱和条件下的粒度分布曲线中得出土壤水特征曲线(保水率和水力传导率)。给定从表面的渗透,化学物质浓度的初始条件和水含量分布,模拟了化学物质在渗流区内的浸出与时间和深度的关系。说明了可渗透含水层的方法。使用有限元代码对饱和和不饱和流动进行模拟。根据含水层的非均质性和地下水位的深浅,模拟了不同的情景。建模结果表明,在所研究的示例案例中,地下水位的硝酸盐浓度负载与地下水位的位置关系不大,而取决于含水层的材料特性。这项工作的贡献在于方法学,该方法仅使用含水层的粒度特性即可预测硝酸盐的浸出。它使从业人员可以使用有限的数据来获得浸出的初步评估。

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