Integration of geoelectrical, hydrochemical and geothermal data to identify the origin of thermal water in the foothills of the Tlemcen mountains, Northwestern Algeria

S. Yousfi, R. Kerzabi, J. Mudry, Mustapha Bensalah, Abdelhamid Achachi, Bernard Collignon
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Abstract

In previous studies, the mean geothermal gradient of the Tlemcen region has been estimated as low (3.7°C/100m). The existing boreholes in the Remchi plain (North of the Tlemcen Mountains) reveal thermal waters (26-48°C) and a remarkable artesianism. To understand the hydrodynamics and origin of thermalism of this groundwater, we merged geophysical and physical-chemical data. Geophysical data allowed us to improve the resolution of the fault network, to estimate the thickness of various sandstone beds connected with the thermal reservoir and to delimit the productive aquifer. Chemical characteristics of waters have been used for a statistical analysis, which displayed two independent water clusters resulting from two hydrodynamic patterns throughout the aquifer. The hydrothermal analysis identifies the depth reached by water and the relationship between water circulation and the fault network. Comparison with previous studies allowed us to build a schematic geological model, which explains hydrodynamics, origin and role of this structure in the groundwater flow.
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整合地质电气、水化学和地热数据,确定阿尔及利亚西北部特莱姆森山麓的热水源
以前的研究估计,特莱姆森地区的平均地热梯度较低(3.7°C/100 米)。雷姆奇平原(特莱姆森山脉以北)现有的钻孔揭示了热水域(26-48°C)和显著的自流现象。为了了解这些地下水的流体动力学和热源,我们将地球物理数据和物理化学数据合并在一起。地球物理数据使我们能够提高断层网络的分辨率,估算与热储层相连的各种砂岩层的厚度,并划定高产含水层的范围。我们利用水的化学特征进行了统计分析,结果显示,整个含水层的两种水动力模式产生了两个独立的水群。水热分析确定了水到达的深度以及水循环与断层网络之间的关系。通过与以往研究的比较,我们建立了一个示意性地质模型,解释了该结构在地下水流中的水动力、起源和作用。
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