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首页> 外文期刊>Current Journal of Applied Science and Technology >Geo-electrical Method Applied to Evaluation ofGroundwater Potential and Aquifer ProtectiveCapacity of Overburden Units
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Geo-electrical Method Applied to Evaluation ofGroundwater Potential and Aquifer ProtectiveCapacity of Overburden Units

机译:地电法在覆盖单元地下水电位及含水层保护能力评价中的应用

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Aims: This study was designed to determine different subsurface Geo-electric layers, the aquifer units, determination of Dar-Zarrouk parameter (Longitudinal conductance(S) and Transverse resistance (R)) as well as identifying suitable areas with poor, weak, moderate and excellent aquifer protective capacity rating.Study Design: The study area, Sabo in Kaduna state lies approximately between latitudes 10o25’N and 10o30’N and longitudes 7o25’E and 78o30’E covering an area of about 500,000m2.Methodology: A total of sixty-six (66) vertical electrical soundings (VES) using Schlumberger electrode array were acquired with a maximum electrode separation of AB/2=100 m, using the ABEM Terrameter SAS 300C.Results: Maximum of five lithologies were identified namely, topmost layer which consists of lateritic clay, river sand and gravel, clayey sand, weathered transition zone/ fractured layer and the fresh basement. Qualitative interpretation indicates that the weathered layer and weathered/fractured basement constitutes the main aquifer units. These aquifers are characterized by thick overburden found within basement depressions with maximum value of 65 m and resistivity values between 10 ohm.m and 756 ohm.m. The Dar-Zarrouk parameters evaluated are total longitudinal unit conductance (S) and total transverse resistance (T) with values ranging from 0.005 – 0.65 mhos and 2000 – 32000 ohm.m2.Conclusion: The results show that the lithology of the aquifer is dominated by clay/clayey sand and sandy materials with attendant low and high transmissivity. About 80 % of the area has longitudinal conductance value greater than 0.3 mhos due to high content of clay/lateritic clay indicating moderate protective capacity rating, hence vulnerable to contamination.
机译:目的:本研究旨在确定不同的地下地电层,含水层单位,Dar-Zarrouk参数(纵向电导(S)和横向电阻(R))的确定以及确定差,弱,中度的合适区域研究设计:位于卡杜纳州的萨博研究区大约位于北纬10o25'N和10o30'N之间,东经7o25'E和78o30'E之间,占地面积约500,000m2。使用ABEM Terrameter SAS 300C,使用斯伦贝谢电极阵列获得了六十六(66)个垂直电测深(VES),最大电极间距为AB / 2 = 100 m。结果:确定了最多五个岩性,即最顶部层由红土,河沙和砾石,黏土,风化过渡带/裂缝层和新鲜基底组成。定性解释表明,风化层和风化/断裂地下室是主要含水层单元。这些含水层的特征是在地下洼地中发现了较厚的覆盖层,最大值为65 m,电阻率在10 ohm.m和756 ohm.m之间。评估的Dar-Zarrouk参数为总纵向单位电导(S)和总横向电阻(T),范围在0.005 – 0.65 mhos和2000 – 32000 ohm.m2之间。结论:结果表明,含水层的岩性是主要的由粘土/粘土砂和含沙物质制成,具有低和高的透射率。由于粘土/红土粘土含量高,表明该区域的纵向电导率值大于0.3 mhos,这表明其防护能力等级适中,因此容易受到污染。

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