Vertical electrical sounding for characterizing subsurface tectonic features and their impacts on groundwater occurrences: a case study of basaltic Jbab uplifting in southern Syria

Jamal Asfahani
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Abstract

Eighteen vertical electrical soundings (VES) were carried out by applying the Schlumberger configuration to characterize the main subsurface tectonic features and determine their impacts on groundwater occurrences of the uplifted Jbab area in Southern Syria. Different interpretative approaches were used to interpret these VES distributed on one longitudinal profile (LP) and four transverse profiles TP1, TP2, TP3, and TP4. The originality of this work is the conjoint use of Pichgin and Habibullaev technique, the fractal concentration-number (C–N) modeling technique, and the 1D inversion technique as an integrated interpretative approach (IIA) in subsurface basalt characterization. This IIA proves its efficacy while interpreting the VES data, in delineating the main subsurface geology and the tectonic conditions and their influences on the groundwater distributions in a basaltic Jbab environment. Several optimum VES points are accordingly proposed and arranged according to their importance for drilling wells for groundwater extraction. The integrated developed geoelectrical technology described in this paper is recommended to be applied for characterizing similar basaltic areas worldwide.
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垂直电法探测地下构造特征及其对地下水分布的影响:叙利亚南部玄武岩贾巴卜隆起案例研究
采用 Schlumberger 配置法进行了 18 次垂直电测深(VES),以确定地下主要构造特征,并确定其对叙利亚南部 Jbab 隆起地区地下水的影响。使用了不同的解释方法来解释这些分布在一个纵向剖面(LP)和四个横向剖面 TP1、TP2、TP3 和 TP4 上的 VES。这项工作的独创性在于将 Pichgin 和 Habibullaev 技术、分形浓度数(C-N)建模技术和一维反演技术结合使用,作为地下玄武岩特征描述的综合解释方法(IIA)。这种综合解释方法证明了其在解释 VES 数据、划分主要地下地质和构造条件及其对 Jbab 玄武岩环境中地下水分布的影响方面的有效性。因此,根据钻井开采地下水的重要性,提出并安排了几个最佳 VES 点。建议将本文所述综合开发的地质电学技术用于确定世界各地类似玄武岩地区的特征。
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