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Decomposition technique for contributions to groundwater heads from inside and outside of an arbitrary boundary: application to Guantao County, North China Plain

机译:在任意边界内外,对地下外地下和外部的贡献的分解技术:在华北省冠岛县的应用

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摘要

To assess the efficiency of the groundwater management of an administrative unit, we propose decomposing the groundwater head changes within an administrative unit into inside and outside contributions by using numerical models. Guantao County of Hebei Province, China, serves as an example to demonstrate the decomposition technique. The groundwater flow model of Guantao was constructed using observed heads as prescribed head boundary conditions. The model was coupled with Hydrus 1-D to calculate the groundwater recharge distribution in time reflecting the delay and damping effects of the soil column on seepage at the surface. The model was calibrated by adjusting parameters such as hydraulic conductivities, recharge infiltration ratios and specific yields. The calibrated parameters are then used in a large model with a boundary at a large distance from Guantao administrative boundary to determine the groundwater head changes due to inside drivers. The differences of the two models on the Guantao boundary serve as the specified head values on the boundary for a small-scale model, which is used to calculate the groundwater head imposed by outside drivers. To eliminate inconsistencies caused by the different types of boundary conditions of large and small models, the groundwater head changes due to inside drivers must be updated. The results indicate that the groundwater head changes in the center and south of Guantao County are influenced equally by both inside and outside contributions, while in the north outside contributions have the stronger impact. On average, 48.5 % of groundwater head changes in the whole of Guantao County is influenced by inside contributions, while 51.5 % is due to outside contributions. The sensitivity analysis shows that the groundwater head changes and their decomposition are much more sensitive to infiltration ratios than to the aquifer parameters. The parameters within Guantao have a certain influence on the net groundwater head changes, while the parameters outside of Guantao only have an influence on the decomposition.
机译:为评估行政单位地下水管理的效率,我们建议通过使用数值模型将地下水头部变化分解到内部和外部捐款。中国河北省瓜涛县是展示分解技术的榜样。使用观察头作为规定的头边界条件构造瓜涛的地下水流量模型。该模型与氢气1-D耦合,计算地下水补给分布,反映了土柱对表面渗流的延迟和阻尼效应。通过调节液压导电性,补给渗透比和特定产量等参数来校准该模型。然后在大型模型中使用校准参数,其中边界距瓜涛行政边界大距离,以确定由于司机内外的地下水位变化。瓜涛边界上的两个模型的差异用作小规模模型的边界上的指定的头值,用于计算外部驱动器施加的地下水头。为了消除由大小模型的不同类型的边界条件引起的不一致,必须更新由于内部驱动程序引起的地下水更改。结果表明,围堂县中心和南部地下水的变化在内外贡献的平等受到影响,而在北方外部捐款具有更强的影响。平均而言,整个围堂县的地下水位变化的48.5%受到内部贡献的影响,而51.5%是由于外部捐款。敏感性分析表明,地下水位变化和它们的分解对渗透率比含水层参数更敏感。瓜涛内的参数对净地下水头的变化有一定影响,而郭涛以外的参数仅对分解产生影响。

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