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GIS-based impact assessment of land-use changes on groundwater quality: study from a rapidly urbanizing region of South India

机译:基于GIS的土地利用变化对地下水水质的影响评估:来自印度南部快速城市化地区的研究

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This study attempts to assess the influence of changing land-use patterns on the groundwater quality of the hard rock aquifer system in the Maheshwaram watershed, near Hyderabad, India. The study area is a rapidly urbanizing region with land development progressing at a fast pace. To study the impact of this rapid urbanization and overall land-use transition, a groundwater quality index (GQI) was prepared within a geographical information system (GIS). The GQI integrates the different water quality parameters to give a final index value that can be used for spatio-temporal comparisons. The land-use transitions were closely monitored from 2003 to 2008 using multispectral satellite images. The land-use pattern has changed drastically with an increase in the built-up area at the expense of other land uses. The analysis reveals a rapid deterioration of groundwater quality related mainly to the increase in built-up land with unsewered sanitation and poultry farms. Seasonal variability of the groundwater quality was also assessed. Mean GQI decreased from 84.16 to 83.26 over a period of 5 years from 2003 to 2008, while seasonal variability of water quality increased. GQI and Seasonal Variability of water quality were integrated in GIS to yield a groundwater sustainability map, in terms of water quality. Zones of sustainable and unsustainable groundwater use were demarcated for better decision making related to municipal land allotment in this rapidly urbanizing region.
机译:这项研究试图评估改变土地利用方式对印度海得拉巴附近Maheshwaram流域硬岩含水层系统地下水水质的影响。研究区域是一个快速城市化的地区,土地开发快速发展。为了研究这种快速城市化和总体土地利用过渡的影响,在地理信息系统(GIS)中准备了地下水质量指数(GQI)。 GQI整合了不同的水质参数,以提供最终指标值,该指标值可用于时空比较。 2003年至2008年,使用多光谱卫星图像对土地利用的过渡过程进行了密切监测。随着建筑面积的增加,土地利用方式发生了巨大变化,而其他土地利用却受到了损害。分析表明,地下水水质迅速下降,主要与环境卫生和家禽养殖场未铺设污水的建筑用地增加有关。还评估了地下水水质的季节性变化。从2003年到2008年的5年中,平均GQI从84.16下降到83.26,而水质的季节性变化增加了。将GQI和水质的季节性变化整合到GIS中,以产生关于水质的地下水可持续性地图。划定了可持续和不可持续的地下水利用区,以便在这个快速城市化地区更好地做出与市政土地分配有关的决策。

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