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Hydrogeological characterization of aquifer in palla flood plain of Delhi using integrated approach

机译:用综合办法德里帕拉洪泛平原含水层的水文地质表征

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AbstractThe Yamuna flood plains spread across the northern part of Indian subcontinent is home to millions of people. The ever-growing population in these plains make it difficult to sustain the demand of freshwater resources. However, the productive aquifers of flood plains could provide solution for these issues. In this context, it is necessary to understand the aquifer characteristics. Thus, the paper attempts to characterize the aquifer in Palla area of the flood plain using integrated approach. Besides, grain size analysis and site-litholog study, the nature of aquifer material was also ascertained from bulk mineralogy of the sediments using X-Ray Diffraction. The aquifer parameters were estimated with help of long duration pumping test data. Moreover, the effect of pumping on salinity variation and hydrochemical facies evolution was also examined. The sand dominant, unconfined aquifer was estimated to have horizontal hydraulic conductivity in the range of 25 m/day and vertical hydraulic conductivity of 6–7 m /day. While the specific yield of the aquifer was estimated in the range of 0.07–0.08. It is observed that under conducive active flood plain environment, the given sand mineralogy at the site does not allow salinity increase in groundwater even after more than a decade of groundwater pumping. In fact, over years, hydrochemical facies have evolved towards Bicarbonate type. These things put together make the active flood plain aquifer a sustainable groundwater resource.
机译:<标题>抽象 ara> yamuna洪水在印度北部的北部传播是数百万人的所在地。这些平原中不断增长的人口使得难以维持淡水资源的需求。然而,洪水平原的生产含水层可以为这些问题提供解决方案。在这种情况下,有必要了解含水层特征。因此,纸张试图使用综合方法表征洪水平原帕拉地区的含水层。此外,谷物尺寸分析和立场 - 石英学研究,还利用X射线衍射从沉积物的块状矿物学中确定了含水层的性质。估计含水层参数借助长期泵送测试数据估计。此外,还研究了泵送盐度变化和水化学相进化的影响。估计砂占优势,无凝结的含水层的水平液压导电率为25米/天,垂直液压导电率为6-7米/天。虽然含水层的特定产量估计在0.07-0.08的范围内。观察到,在有利于有利于有效的洪水平原环境下,即使在十多年的地下水泵送之后,该部位的给定沙子矿物也不允许地下水的盐度增加。事实上,多年来,水化学相进化了碳酸氢盐类型。这些东西放在一起使活跃的洪水普通含水层是可持续地下水资源。

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