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Application of the Electrical (Geophysical) Method for the Identification of the Sealed Bevel in the Coastal Region of Walidia Province of el Jadida – Morocco

机译:电气(地球物理)方法在埃拉迪达沿海地区鉴定密封斜面的识别 - 摩洛哥

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摘要

The Walidia area knows a great development of agricultural, industrial, maritime activities and a very great demographic expansion. This development is accompanied by a growing demand for water. On the other hand, any intense abstraction of fresh water at a coastal aquifer capture field causes a decrease in groundwater flow and a lowering of the piezometric surface. There is therefore a danger of advancing towards the land of the saltwater bevel and salinization of groundwater which is gradually loaded into mineral salts and can reach abnormally high levels. This work deals with the application of geophysics by electrical sounding method to the in-depth study of the freshwater-salt water interface (salted bevel) on the one hand and the study of the lateral and vertical evolution of the geometry of the different aquifers.The principle of the method is, when performing an electrical survey, to research how varies, at a given point on the surface, the resistivity of the subsoil vertically. For this one executes in a same place a succession of measurements, increasing each time the dimensions of the device and thus the depth of investigation which is proportional to them. At this site, we explore a slice of ground increasingly thick and thus highlights the changes in geological constitution along the vertical.The electrical soundings were carried out with the classic Schlumberger device.The interpretation and the exploitation of the data of the electric soundings carried out made it possible to :Follow the evolution of the salted bevel roof,Draw the upstream limit (marine invasion) of salted bevel Hauterivian, on the one hand, and Valanginian and Jurassic on the other hand,Follow the roof structure of Dridrat limestone (Hauterivien) and limestones of Valanginien and Upper Jurassic,Draw the map of the marl roof of Safi (Hauterivian) constituting the impermeable substratum of Dridrat limestones.
机译:Walidia地区了解农业,工业,海事活动以及具有非常巨大的人口扩张的发展。这种发展伴随着日益增长的水需求。另一方面,沿海含水层捕获场的任何强烈抽象都会导致地下水流量减少和压力表面的降低。因此,朝向盐水斜面的土地和地下水的盐化造成的危险越来越大,逐渐加载到矿物盐中,可达到异常高的水平。这项工作涉及通过电气探测方法应用Geophysics对淡水 - 盐水界面(盐渍槽)的深度研究,以及不同含水层的几何形状的横向和垂直演化的研究。当执行电气调查时,该方法的原理研究如何在表面上的给定点,围绕表面的电阻率。对于该来说,在同一个位置执行一次,每次每次增加设备的尺寸,从而增加与它们成比例的研究深度。在这个网站上,我们探讨了一片地面越来越厚的地面,从而突出了垂直地质构成的变化。用经典的钢板装置进行电气探测。解释和开发电动探测的数据沿着盐渍斜面屋顶的演变,沿着一方面,用一方面的盐渍斜面甲板的上游极限(海洋入侵),另一方面,沿着Dridrat石灰岩的屋顶结构遵循Draidrat Limestone的屋顶结构(Hauterivien )瓦朗尼恩和上侏罗纪的石灰岩,绘制了构成Dridrat石灰岩的不可渗透性外部的Safi(Hautivian)的Marl屋顶的地图。

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