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Numerical modelling of groundwater flow to understand the impacts of pumping on arsenic migration in the aquifer of North Bengal Plain

机译:为了解北孟加拉平原含水层中抽水对砷迁移的影响而进行的地下水流数值模拟

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In this paper, numerical simulations of regional-scale groundwater flow of North Bengal Plain have been carried out with special emphasis on the arsenic (As)-rich alluvium filled gap between the Rajmahal hills on the west and the Garo hills on the east. The proposed concern of this modelling arose from development that has led to large water table declines in the urban area of English Bazar block, Malda district, West Bengal and possible transport of As in the near future from the adjacent As-polluted aquifer. Groundwater occurs under unconfined condition in a thick zone of saturation within the Quaternaryalluvial sediments. Modelling indicates that current pumping has significantly changed the groundwater flowpaths from pre-development condition. At the present pumping rate, the pumping wells of the urban area may remain uncontaminated till the next 25 yrs, considering only pure advection of water but some water from the As-polluted zone may enter wells by 50 yrs. But geochemical and other processes such as adsorption, precipitation, redox reaction and microbial activity may significantly retard the predicted rate by advective transport. In the rural areas, majority of the water pumped from the aquifer is forirrigation, which is continuously re-applied on the surface. The near-vertical nature of the flowpaths indicates that, where As is present or released at shallow depths, it will continue to occur in pumping wells. Modelling also indicates that placing all the pumping wells at depths below 100 m may not provideAs-free water permanently.
机译:在本文中,对北孟加拉平原地区规模的地下水流进行了数值模拟,其中特别强调了西部拉贾马哈丘陵和东部加罗丘陵之间富含砷(As)的冲积物填充间隙。开发过程引起了人们对这种模型的关注,这种发展导致西孟加拉邦马尔达地区英属巴扎尔街区市区的地下水位大幅下降,并在不久的将来可能从邻近的被砷污染的含水层中运出砷。在第四纪冲积沉积物的一个较厚的饱和区中,地下水是在无限制条件下发生的。建模表明,当前抽水已大大改变了开发前的地下水流径。以目前的抽水速度,考虑到仅对流水,市区的抽水井可能会在接下来的25年内保持未被污染,但考虑到砷污染区的一些水可能会在50年后进入水井。但是地球化学和其他过程(例如吸附,沉淀,氧化还原反应和微生物活性)可能会通过平流传输而显着延迟预测速率。在农村地区,从含水层中抽出的大部分水是灌溉水,灌溉水不断地重新注入地表。流动路径的近乎垂直的性质表明,在浅深度存在或释放出砷的地方,它将继续在抽油井中发生。模型还表明,将所有抽水井置于100 m以下的深度可能无法永久提供无砷的水。

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