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首页> 外文期刊>Arabian journal of geosciences >Hydrogeophysical evaluation of aquifer hydraulic characteristics using surface geophysical data: a case study of Umuahia and environs, Southeastern Nigeria
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Hydrogeophysical evaluation of aquifer hydraulic characteristics using surface geophysical data: a case study of Umuahia and environs, Southeastern Nigeria

机译:利用地表地球物理数据对含水层水力特性进行水文地球物理评估:以尼日利亚东南部的Umuahia和周边地区为例

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The determination of aquifer hydraulic characteristics of Umuahia area from Dar-Zurrouk parameters was carried out using 30 vertical electrical sounding (VES) data and information from ten well-log data. The Schlumberger electrode configuration was employed for the field data acquisition with a maximum half current electrode separation (AB/2) of 500 m. The VES data were interpreted using the conventional partial curve matching technique to obtain initial model parameters which were used as input for computer iterative modeling using the OFFIX software. Aquifer apparent resistivity in the area varies from 109 to 850 a"broken vertical bar m with a mean value of 253.2 a"broken vertical bar m. The depth to water table varies from 0.7 m around Ajata Ibeku to 82.67 m at Mater Dei Umuahia. The aquifers of the study area are highly variable in thickness with Ajata Ibeku having the least thickness of 1.2 m. The hydraulic conductivity across the area ranges from 0.64 m/day to about 10.22 m/day, while the transmissivity have mean values of 308.16 and 6.257 m(2)/day for zones A and B, respectively. The mean storativity values of 1.92 x 10(-4) and 1.74 x 10(-5) for zones A and B, respectively, suggest that zone A has a fairly productive aquifer unlike zone B which revealed very poor hydraulic properties. Information extracted from iso-resistivity models, geo-electric cross-sections, litho logs, and electric logs revealed a sandy clay lithology at very shallow depths with a thick layer of shale/clay extending to over 300 m within zone B. These potential shallow aquiferous units are however perched, partially saturated and may not have sufficient yield.
机译:使用30个垂直电测深(VES)数据和来自十个测井数据的信息,根据Dar-Zurrouk参数确定Umuahia地区的含水层水力特性。斯伦贝谢电极配置用于现场数据采集,最大半电流电极间距(AB / 2)为500 m。使用常规的部分曲线匹配技术解释VES数据,以获得初始模型参数,这些初始参数用作使用OFFIX软件进行计算机迭代建模的输入。该区域中含水层的视在电阻率在109至850 a“垂直断线m”之间变化,平均值为253.2 a“垂直断线m”。地下水位的深度从Ajata Ibeku附近的0.7 m到Mater Dei Umuahia的82.67 m不等。研究区域的含水层的厚度变化很大,Ajata Ibeku的最小厚度为1.2 m。整个区域的水力传导率从0.64 m /天到约10.22 m /天,而区域A和B的透射率平均值分别为308.16和6.257 m(2)/天。 A区和B区的平均储藏率分别为1.92 x 10(-4)和1.74 x 10(-5),这表明A区的含水层与B区不同,B区的水力特性非常差。从等电阻率模型,地电横截面,岩性测井和电测井中提取的信息显示,在非常浅的深度处为砂质粘土岩性,在B区内有厚厚的页岩/粘土层延伸至300 m以上。这些潜在的浅层然而,含水单位是栖息的,部分饱和的并且可能没有足够的产量。

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