首页> 外文期刊>Arabian journal of geosciences >Hydrogeophysical investigation and estimation of groundwater potentials of the Lower Palaeozoic to Precambrian crystalline basement rocks in Keffi area, north-central Nigeria, using resistivity methods
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Hydrogeophysical investigation and estimation of groundwater potentials of the Lower Palaeozoic to Precambrian crystalline basement rocks in Keffi area, north-central Nigeria, using resistivity methods

机译:用电阻率法对尼日利亚古菲地区下古生界至前寒武纪晶体基底岩石的水文地球物理调查和地下水潜力估算

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摘要

The use of resistivity sounding and two-dimensional(2-D) resistivity imaging was investigated with the aim of delineating and estimating the groundwater potential in Keffi area. Rock types identified are mainly gneisses and granites. Twenty-five resistivity soundings employing the Schlumberger electrode array were conducted across the area. Resistivity sounding data obtained were interpreted using partial curve matching approach and 1-D inversion algorithm, RESIST version 1.0. The 2-D resistivity imaging was also carried out along two traverses using dipole–dipole array, and the data obtained were subjected to finite element method modeling using DIPRO inversion algorithm to produce a two-dimensional subsurface geological model. Interpretation of results showed three to four geoelectrical layers. Layer thickness values were generally less than 2mfor collapsed zone, and ranged from5 to 30 m for weathered bedrock (saprolite). Two major aquifer units, namely weathered bedrock (saprolite) aquifer and fractured bedrock (saprock) aquifer, have been delineated with the latter usually occurring beneath the former in most areas.Aquifer potentials in the area were estimated using simple schemes that involved the use of three geoelectrical parameters, namely: depth to fresh bedrock, weathered bedrock (saprolite) resistivity and fractured bedrock (saprock) resistivity. The assessment delineated the area into prospective high, medium and low groundwater potential zones.
机译:研究了电阻率测深和二维(2-D)电阻率成像的用途,目的是勾画和估计Keffi地区的地下水潜力。确定的岩石类型主要是片麻岩和花岗岩。在整个区域进行了采用斯伦贝谢电极阵列的二十五个电阻率测深。使用部分曲线匹配方法和一维反演算法RESIST 1.0版解释获得的电阻率测深数据。还使用偶极子-偶极子阵列沿两个导线进行了二维电阻率成像,并使用DIPRO反演算法对获得的数据进行了有限元方法建模,从而生成了二维地下地质模型。对结果的解释显示三到四个地电层。对于塌陷区,层厚度值通常小于2m,对于风化基岩(腐泥土),层厚度范围为5至30m。划定了两个主要的含水层单元,即风化基岩(腐泥土)含水层和裂隙基岩(边坡)含水层,后者通常发生在大多数地区的前者之下,该地区的含水层潜力通过简单的方案估算,涉及到三个地电参数,即:新鲜基岩的深度,风化基岩(腐泥土)的电阻率和断裂基岩(边坡)的电阻率。评估将区域划分为潜在的高,中和低地下水位区域。

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