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首页> 外文期刊>Journal of water resource and protection >Determination of Aquifer Properties and Groundwater Vulnerability Mapping Using Geoelectric Method in Yenagoa City and Its Environs in Bayelsa State, South South Nigeria
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Determination of Aquifer Properties and Groundwater Vulnerability Mapping Using Geoelectric Method in Yenagoa City and Its Environs in Bayelsa State, South South Nigeria

机译:尼日利亚南部南部巴耶尔萨州耶那哥市及其周边地区地电方法确定含水层性质和地下水脆弱性图

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Nineteen Schlumberger vertical electrical soundings (VES) were carried out within and around Yenagoa city, South South Nigeria, using a maximum current electrode separation ranging between 300 - 400 m. The objectives of the study were 1) to evaluate the possibility of mapping Quaternary sediments to infer the geological structure from the electrical interpretation and identify formations that may hold fresh water with low concentration of conducting minerals such as iron 2) to evaluate the vulnerability of the aquifer in the study area. The interpretation of the data collected was by computer assisted iterative interpretation using 1-D inversion technique software (1X1D, Interpex, USA). The results of the interpretation revealed four distinct geoelectric layers. Sounding curve types obtained in the area are mostly of the form ρ_1 > ρ_2<ρ_3<ρ_4 (where p is the density) but fresh water lenses with low concentration of conducting minerals such as iron were obtained only in locations that exhibit ρ_1 < ρ_2 > ρ_3 < ρ_4 curve types. Depth to the aquifer ranges from 4.5 m in the vicinity of VES 05 to 27.0 m at the vicinity of VES 14. The resistivity of the aquiferous horizon varies between 60 - 2868 Ωm. High transverse resistance values obtained were associated with zones of high transmissivity which agrees with the geology of the Benin Formation (Coastal Plain sands) consisting of fine-medium-coarse sands. The aquifer vulnerability map illustrates the impermeability of the overburden clay layer. Values of >0.5 mhos indicate good protective capacity, while values <0.3 mhos indicate vulnerable zones with probable risk of contamination.
机译:在尼日利亚南部南部的耶纳哥市内及周边进行了19次斯伦贝谢垂直电测深(VES),最大电流电极间距在300-400 m之间。研究的目的是1)评估通过电学解释绘制第四纪沉积物以推断地质结构的可能性,并确定可能含有淡水的低浓度导电性矿物(如铁)的地层2)评估其易损性。研究区域的含水层。使用一维反演技术软件(1X1D,Interpex,美国)通过计算机辅助的迭代解释对收集的数据进行解释。解释结果揭示了四个不同的地电层。在该区域获得的测深曲线类型主要为ρ_1>ρ_2<ρ_3<ρ_4(其中p为密度),但是仅在具有ρ_1<ρ_2>的位置获得具有低浓度导电矿物(例如铁)的淡水透镜。 ρ_3<ρ_4曲线类型。含水层的深度范围从VES 05附近的4.5 m到VES 14附近的27.0 m。含水层的电阻率在60-2868Ωm之间变化。所获得的高横向阻力值与高透射率区域有关,这与由中,粗砂构成的贝宁组(沿海平原砂)的地质特征相符。含水层易损性图说明了上覆粘土层的不渗透性。值> 0.5 mhos表示具有良好的防护能力,而值<0.3 mhos表示易受污染的区域。

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