首页> 外文期刊>Journal of African Earth Sciences >Geoelectrohydraulic parameters of shallow sandy aquifer in Itu, Akwa Ibom State (Nigeria) using geoelectric and hydrogeological measurements
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Geoelectrohydraulic parameters of shallow sandy aquifer in Itu, Akwa Ibom State (Nigeria) using geoelectric and hydrogeological measurements

机译:利用地电和水文地质测量法,尼日利亚阿夸伊博姆州伊图的浅层砂质含水层的地电水力参数

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Knowledge of geoelectrohydraulic parameters is paramount in the management of groundwater resource and the design and construction of safe engineering structures. Results obtained from integrated borehole-constrained geophysical analyses and interpretations, in situ measurements on water samples and laboratory analyses of aquifer units were employed in estimating the basic geoelectrohydraulic parameters such as formation factor, porosity, tortuosity, coefficient of permeability, bulk and interface conductivities. Other parameters estimated are Dar-Zarrouk parameters and transmissivities. The application of empirical and semi-empirical models in the analyses of sixteen evenly spread resistivity and hydrogeological data of sixteen nearby aquifer repositories measured in laboratory were combined with the results of in situ measurements of water samples to obtain the geoelectrohydraulic properties. The ranges of results obtained and their variations established through computations and graphical illustrations show goodness of fit when compared with other ranges and variations documented in literatures. From the results, the upper hydrogeological units have bulk resistivity range of 804-6001 Omega m with mean value of 4118 52 m. The range of water resistivity and the mean are respectively 21.9-612.052 Omega m and 237.7 Omega m. Formation resistivity factor ranges from 9.8 to 36.7 with an average value of 21.6. The estimated range and mean values of porosity were 16.7-29.69% and 21.8%. The tortuosity values range from 1.79 to 2.48 with a mean value of 2.11. The hydraulic conductivity values,of the aquifer units gave a range 'spanning between 3.03 x 10(-5) (2.6) and 2.38 x 10(-4) m/s (20.60 m/day) with an average value of 7.46 x 10(-5) m/s (6.45 m/day). The economic aquifers have thicknesses ranging from 27.9 to 103.0 m and a mean value of 63.1 m. The range and the mean values of Dar-Zarrouk parameters are 9.0 x 10(-3)-3.5 x 10(-2) Omega(-1) and 1.8 x 10(-2) Omega(-1) for longitudinal conductance and 22,432-565,88251 Omega m(2) and 28,6393 52 m(2) for transverse resistance respectively. The transmissivity also lies between 73 and 1186 m(2)/day with a mean value of 672.0 m(2)/day. The deduced parameters can be used as the physical basis for predicting groundwater flow and a guide to designing geofluid flow modelling programmes in the saturated subsurface of the study area. The estimated models and spatial spread of parameters from data processing are promising and suitable for use in contaminant migration modelling. They can also be used to improve the quality of existing models in the study area. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在地下水资源的管理以及安全工程结构的设计和建造中,最重要的是了解地电液压参数。通过综合井眼受限的地球物理分析和解释,对水样的原位测量以及含水层单元的实验室分析获得的结果被用于估算基本的地电液压参数,例如地层因子,孔隙度,曲折度,渗透系数,体积和界面电导率。估计的其他参数是Dar-Zarrouk参数和透射率。将经验模型和半经验模型在分析实验室测得的16个附近含水层库的16个均匀分布的电阻率和水文地质数据中的应用与水样的现场测量结果相结合,以获得地电水力性质。与文献中记录的其他范围和变化相比,所获得的结果范围以及通过计算和图形说明建立的变化显示出拟合的良好性。根据结果​​,上部水文地质单元的体电阻率范围为804-6001Ω·m,平均值为4118 52 m。电阻率范围和平均值分别为21.9-612.052Ω·m和237.7Ω·m。地层电阻率因子范围为9.8至36.7,平均值为21.6。孔隙率的估计范围和平均值分别为16.7-29.69%和21.8%。弯曲度值在1.79至2.48之间,平均值为2.11。含水层单元的水力传导率值范围介于3.03 x 10(-5)(2.6)和2.38 x 10(-4)m / s(20.60 m /天)之间,平均值为7.46 x 10 (-5)m / s(6.45 m /天)。经济含水层的厚度为27.9至103.0 m,平均值为63.1 m。 Dar-Zarrouk参数的范围和平均值分别为9.0 x 10(-3)-3.5 x 10(-2)Omega(-1)和1.8 x 10(-2)Omega(-1)以及纵向电导和22,432 -565,88251 Omega m(2)和28,6393 52 m(2)分别用于横向阻力。透射率也位于73至1186 m(2)/天之间,平均值为672.0 m(2)/天。推导的参数可以用作预测地下水流量的物理基础,也可以作为设计研究区域饱和地下地下水流模型的指南。来自数据处理的估计模型和参数的空间分布是有希望的,并适合用于污染物迁移建模。它们还可以用于提高研究区域中现有模型的质量。 (C)2015 Elsevier Ltd.保留所有权利。

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