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首页> 外文期刊>Advances in Water Resources >Analytical solution for enhanced recharge around a bedrock exposure caused by deep-aquifer dewatering through a variable thickness aquitard
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Analytical solution for enhanced recharge around a bedrock exposure caused by deep-aquifer dewatering through a variable thickness aquitard

机译:通过深层含水层通过可变厚度的脱水层脱水导致的基岩裸露周围补给量增加的分析解决方案

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In this study an analytical solution was developed to predict steady radially-symmetric percolation rates from an aquifer underlain by a variable thickness aquitard. The solutions consider an aquitard with constant thickness and with radial-symmetrically increasing thickness outward from the center. The solution was used to predict the percolation rate from a peat layer around a bedrock outcrop in the James Bay Lowland near the De Beers Victor diamond mine. In this case the marine sediment layer limited the direct connection between the peat layer and the bedrock as an aquitard. Our zero order solution with constant marine sediment thickness showed the best fit to the steady state water level data of June 2012. It was found that the enhanced recharge around bioherms (i.e., at rates greater than the regional average of 0.7 mm/day) will only occur in marine sediments less than 4.3 m thick, for extreme depressurization of 30 m.
机译:在这项研究中,开发了一种解析解决方案,以预测由可变厚度的阿基塔底下的含水层产生的稳定的径向对称渗透速率。该解决方案考虑了具有恒定厚度并且从中心向外径向对称地增加厚度的无水玻璃。该解决方案用于预测De Beers Victor钻石矿附近的James Bay Lowland基岩露头周围泥炭层的渗滤速率。在这种情况下,海洋沉积物层限制了泥炭层和基岩之间的直接连接,从而起到了无水的作用。我们的零阶解决方案具有恒定的海洋沉积物厚度,显示出最适合于2012年6月的稳态水位数据。发现生物herms周围补给的增强(即速率大于区域平均值0.7 mm /天)将仅发生在厚度小于4.3 m的海洋沉积物中,极端降压30 m。

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