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Estimating the effect of water table oscillations on acidification using a hydraulic model

机译:使用水力模型估算地下水位波动对酸化的影响

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During and after the process of artificial recharge by flooding of former pit mines, oscillations of the water level, caused by seasonal effects or management strategies, are often inevitable. In the study area LOHSA in the new eastern federal states of Germany, the annual water oscillations due to management strategies are predicted to range between 5-8 m. This leads to oxygen input by freshwater and air, which causes pyrite oxidation in the surrounding sediments and leads to additional acidification of both groundwater and the flooded lakes. To quantify the contribution of water oscillations to the acidification processes in the flooded lignite mine LOHSA II, a two-dimensional vertical model was built up using Processing Modflow. The strong lateral migration of the shoreline due to the low morphologic gradient was simulated by the reservoir package. The modelled transient water fluxes were used to estimate the discharge of acid builders from the water-saturated part of the heap into the lake. The contribution of acidification due to the continuous release of weathering products in the unsaturated zone was calculated separately. The modelled scenarios indicate that the contribution to acidification by release of weathering products from the unsaturated zone is small in comparison to the mass input by acid mine drainage from the saturated zone of the heap.
机译:在以前的矿井洪水淹没进行人工补给的过程中和之后,由于季节影响或管理策略而引起的水位波动通常是不可避免的。在德国新的东部联邦州的LOHSA研究区中,由于管理策略而导致的年度水振荡预计在5-8 m之间。这导致淡水和空气中的氧气输入,这导致周围沉积物中的黄铁矿氧化,并导致地下水和洪水泛滥的湖泊进一步酸化。为了量化注水褐煤矿LOHSA II中水振荡对酸化过程的贡献,使用Processing Modflow建立了二维垂直模型。通过储层软件包模拟了低形态梯度导致的海岸线强烈的横向迁移。建模的瞬态水通量被用来估算从堆的水饱和部分到湖中的酸性助洗剂的排放。分别计算了由于不饱和区中风化产物的连续释放而引起的酸化作用。建模的场景表明,与从堆饱和区排酸矿的排水量相比,不饱和区释放风化产物对酸化的贡献很小。

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