首页> 外文期刊>Journal of Water Resource and Protection >Application of Secondary Resistivity Parameters to Determine Potential Aquifer Horizon: Case Study of Basement Rocks of Hussara, Northeastern Nigeria
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Application of Secondary Resistivity Parameters to Determine Potential Aquifer Horizon: Case Study of Basement Rocks of Hussara, Northeastern Nigeria

机译:次电阻率参数在确定潜在含水层层位中的应用:以尼日利亚东北部Hussara的地下岩石为例

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Twenty five vertical electrical sounding using the Schlumberger configuration with current electrode spacing of AB/2 = 100 m were carried out in Hussara, north-eastern, Nigeria. The field data were smoothened and interpreted using IX1D inversion [1] computer software. Secondary resistivity and secondary resistivity derived parameters were used to determine the potential aquifer horizon. Longitudinal conductance map of the third geoelectric layer indicates a higher conducting zone along the eastern part which may indicate possible concentration of weathered materials. Intermediate conductance striking from the north to the southeast may constitute a horizon with increased aquifer materials, while the lower conductivity values may indicate areas of fractured bedrock where the degree of decomposition of the rock fragments is minimal. The transverse resistance map of the same horizon revealed the contour values increasing from the west towards the east perhaps due to the increasing presence of fresh bedrock close to the surface.
机译:在尼日利亚东北部的Hussara,使用Schlumberger配置进行了25次垂直电测深,电流电极间距为AB / 2 = 100 m。使用IX1D反演[1]计算机软件对现场数据进行了平滑和解释。二次电阻率和二次电阻率导出的参数用于确定潜在的含水层水平。第三地电层的纵向电导图表示沿东部的更高的传导带,这可能表明风化物质的可能浓度。从北部到东南部的中间电导可能构成含水层材料增加的地层,而较低的电导率值则可能表明裂隙基岩区域的碎石分解程度最小。同一层的横向阻力图显示出轮廓值从西向东增大,这可能是由于靠近地表的新鲜基岩的存在增加了。

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