首页> 外文期刊>Journal of Applied Geophysics >Application of VES and ERT for delineation of fresh-saline interface in alluvial aquifers of Lower Bari Doab, Pakistan
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Application of VES and ERT for delineation of fresh-saline interface in alluvial aquifers of Lower Bari Doab, Pakistan

机译:ves和ert在巴基斯坦下巴基达姆拉富含盐水粉末描绘新鲜盐水界面的应用

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Geophysical methods are effectively used to delineate intrusion boundary between the fresh and saline aquifers because of their intrinsic capability to assess the lateral variations in the pore-water salinity. In this study, an integrated geophysical approach of vertical electrical sounding (VES) and electrical resistivity tomography (ERT) has been conducted to delineate the contaminated aquifers in the Lower Bari Doab, Pakistan. Electrical resistivity tomography (ERT) using Schlumberger array with 5 m electrode spacing was conducted along eleven profiles at three selected sites (LBD1, LBD2 and LBD3) in the investigated area. The surface geoelectrical method was performed by sixty electrical resistivity soundings using the same array with maximum current electrode spacing (AB = 150 m). The integration of formation resistivity with ten boreholes reveals four discrete subsurface layers i.e., clay having saline aquifer, clay-sand containing brackish aquifer, sand with fresh aquifer and gravel-sand containing fresh aquifer. Estimation of Dar-Zarrouk Parameters (i.e., longitudinal resistivity, transverse resistance and longitudinal conductance) from different combinations of aquifer thickness and resistivity delineated the fresh, brackish and saline water zones with specific values range through mapping and graphical analysis. Geochemical method was performed on forty wells for main cations (K+, Na+, Ca2+ and Mg2+), anions (SO42-, Cl-, HCO3- and NO3-) and other parameters (As, EC, TDS and pH) to validate the results obtained from the geophysical methods. The fresh/saline aquifers delineated by the inclusion of ERT and geoelectrical method are in good agreement with those revealed by the physicochemical analysis and the local hydrogeological data. The results suggest that the use of non-invasive geophysical methods can reduce the number of expensive boreholes to obtain an interface between the fresh and saline water for the exploitation of fresh groundwater resources in a
机译:由于其固有的能力来评估孔隙水分中的横向变化,因此在新鲜和盐水含水层之间有效地用于描绘新鲜和盐水含水层之间的入侵边界。在这项研究中,已经进行了垂直电气探测(Ves)和电阻率断层扫描(ERT)的集成地球物理方法以描绘巴基斯坦下巴巴基亚布里群岛的受污染的含水层。使用具有5M电极间距的钢板仪阵列(LBD1,LBD2和LBD3)中的电阻率断层扫描(ERT)使用具有5M电极间距的钢板阵列,在调查区域中的三个选定地点(LBD1,LBD2和LBD3)进行。使用与最大电流电极间距的相同阵列(AB =150μm)通过六十电阻率探测进行表面电阻率探测。与十个钻孔的形成电阻率的整合揭示了四个离散地下层,粘土,含盐含水层,含有咸沙含水层的粘土砂,用新鲜的含水层和含有新鲜含水层的砾石沙子。估计来自含水层厚度和电阻率不同组合的Dar-Zarrouk参数(即纵向电阻率,横向电阻和纵向电导)在具有特定值范围的新鲜,咸水和盐水区,通过测绘和图形分析。在适用于主阳离子(K +,Na +,Ca2 +和Mg2 +),阴离子(SO42,CL-,HCO3和NO3-)和其他参数(如EC,TDS和PH)上进行地球化学方法以验证结果从地球物理方法获得。通过包含ERT和电气测量法划分的新鲜/盐水含水层与物理化学分析和当地水文地质数据显示的那些吻合良好。结果表明,使用非侵入性地球物理方法可以减少昂贵的钻孔的数量,以获得新鲜和盐水之间的界面,以利用一个新的地下水资源

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