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首页> 外文期刊>Journal of African Earth Sciences >Hydro-geophysical and geochemical investigation of shallow and deep Neogene aquifer systems in Hajeb Layoun-Jilma-Ouled Asker area, Central Tunisia
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Hydro-geophysical and geochemical investigation of shallow and deep Neogene aquifer systems in Hajeb Layoun-Jilma-Ouled Asker area, Central Tunisia

机译:突尼斯中部Hajeb Layoun-Jilma-Ouled Asker地区浅层和深层新近纪含水层系统的水文地球物理和地球化学研究

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摘要

In the Hajeb Layoun-Jilma-Ouled Asker area (Central Tunisia), deep groundwater continues to be an increasingly important resource. In fact, the Neogene sandy, sandstone and clay deposits have important aquiferous potentialities, but their hydrogeologic properties are still unknown, due to their geological complexities and the lack of deep wells investigations. The aim of the following study is to integrate geological, geophysical and hydrogeological data in order to evaluate and characterize the complex Neogene aquifer system of the Hajeb Layoun-Jilma-Ouled Asker basin. Seismic-reflection and wireline logging of petroleum and water wells are used to understand the structuring and the characterization of the Neogene reservoirs. The study of isochron and isobath maps show folded structures and subsiding areas, delimited from West to East by major faults. The establishment of the piezometric maps and the correlation of hydraulic wells allowed us to recognize the hydrological processes in this aquifer system. Hydrodynamics of the shallow aquifer are controlled by geological structures; two independent compartments were identified: A general flow from West to East in the Hajeb Layoun region, a SW-NE flow direction exists in the southern part of the Hajeb Layoun basin. The recharge of the groundwater is in the piedmont of the Mghilla and the Labaeid outcrops as well as in the center of the plain. In the Ouled Asker sub-basin, flow direction is from West to East and becomes from NW to SE between the Sbeitla river and the Jebel Zaouia. In the southern part of the Sbeitla river, flow direction is from West to East. The geochemical analysis of well water samples highlights the distribution of hydrochemical facies of each aquifer. The shallow waters in this area can be identified by two main geochemical facies: Na-Ca-Mg-(SO4), and Na-(Ca)-Mg-Cl-(SO4)-HCO3 mixed type. However, the deep waters are characterized by three main facies: Na-(Ca)-Mg-Cl-(SO4)-HCO3 mixed type, Na-Ca-Mg-CI and Ca-SO4. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在Hajeb Layoun-Jilma-Ouled Asker地区(突尼斯中部),深层地下水仍然是越来越重要的资源。实际上,新近纪的砂,砂岩和粘土沉积物具有重要的含水潜力,但由于其地质复杂性和缺乏深井调查,它们的水文地质性质仍是未知的。以下研究的目的是整合地质,地球物理和水文地质数据,以评估和表征Hajeb Layoun-Jilma-Ouled Asker盆地复杂的新近纪含水层系统。石油和水井的地震反射和电缆测井被用来了解新近系储层的构造和特征。等时线和等压线图的研究显示出折叠结构和下陷区,由主要断层从西向东划定了界线。测压图的建立和水力井的相关性使我们能够认识到该含水层系统中的水文过程。浅层含水层的水动力受地质构造控制;确定了两个独立的区室:Hajeb Layoun地区从西向东的一般流动,Hajeb Layoun盆地的南部存在西南偏北向流动的方向。地下水的补给在Mghilla和Labaeid露头的山麓以及平原中心。在奥勒德·阿斯克(Ouled Asker)子流域,水流方向从西到东,从西北到东南,介于Sbeitla河和Jebel Zaouia之间。在斯贝特拉河的南部,水流的方向是从西向东。井水样品的地球化学分析突显了每个含水层的水化学相分布。该区域的浅水区可以通过两个主要的地球化学相来识别:Na-Ca-Mg-(SO4)和Na-(Ca)-Mg-Cl-(SO4)-HCO3混合型。然而,深水的特征在于三个主要相:Na-(Ca)-Mg-Cl-(SO4)-HCO3混合型,Na-Ca-Mg-Cl和Ca-SO4。 (C)2015 Elsevier Ltd.保留所有权利。

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