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Assessing artificial groundwater recharge on irrigated land using the MODFLOW model

机译:使用MODFLOW模型评估灌溉土地上的人工地下水补给

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Water-resource deficits have led to the need for artificial groundwater-recharge techniques to provide drinking water for rural communities in southeastern Kazakhstan, especially those with a small number of inhabitants. The Kishi-Tobe settlement located in the Karatal agricultural area on the right bank of the Karatal River in southeastern Kazakhstan has severe water-supply shortages. In this study, the groundwater-flow model MODFLOW was used to simulate complex hydrogeological and irrigation conditions for a quantitative assessment of artificial groundwater recharge from infiltration pools. The aim of these pools was to solve the water shortage in the Kishi-Tobe settlement. New findings showed that the maximum rate of artificial groundwater recharge from the infiltration pool can reach 1000 m 3 day ?1 , corresponding to an infiltration rate of 0.2 m day ?1 , which creates a groundwater mound with a radius of around 500 m from the center of the pool. The groundwater mound also serves as a hydrodynamic barrier, preventing inflow of contaminated groundwater from irrigated fields and rice checks to the pumping wells. The potential rate of groundwater pumping from two water-supply wells can reach up to 7350 m 3 day ?1 over 10 years, providing a maximum drawdown in the wells of about 24 m. The water required by the Kishi-Tobe settlement can be supplied at a rate of 864 m 3 day ?1 , achieving both available drawdowns by the end of the forecast period and balanced provision of the groundwater resource.
机译:水资源短缺导致需要人工补给地下水的技术,以为哈萨克斯坦东南部的农村社区,特别是人口少的农村社区提供饮用水。位于哈萨克斯坦东南部Karatal河右岸的Karatal农业区的Kishi-Tobe定居点严重缺水。在这项研究中,地下水流模型MODFLOW用于模拟复杂的水文地质和灌溉条件,用于定量评估渗透池中人工地下水的补给量。这些水池的目的是解决Kishi-Tobe定居点的缺水问题。新发现表明,入渗池人工补给的最大速率可以达到1000 m 3 dayφ1,对应于0.2 m dayφ1的渗透速率,从而形成了一个半径为500 m左右的地下水丘。游泳池的中心。地下水丘还充当流体动力屏障,可防止污染的地下水从灌溉田和大米中流入泵井。从两个供水井抽水的潜在速率可以在10年内达到7350 m 3 day?1,从而使井中的最大汲水量约为24 m。 Kishi-Tobe定居点所需的水的供应量为864 m 3天?1,既可以在预测期结束时实现可用取水量,又可以平衡地提供地下水资源。

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