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Review on the role of geoelectrical surveys in characterizing and deriving the constraints and hydrogeological conditions in semi arid Khanasser Valley region in Syria

机译:电气电压调查在叙利亚半干旱Khanasser谷地区制约与水文地质条件下的作用述评

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ublishercopyright>? 2019 Jamal Asfahani, published by Sciendo 2019.? 2019 Jamal Asfahani, published by Sciendo 2019. This paper is a general review which basically focuses on the role of geoelectrical surveys in characterizing and deriving the constraints and hydrogeological conditions in semi arid Khanasser valley region and its surroundings in Northern Syria. Schlumberger configuration has been used to carry out ninety six vertical electrical soundings VES, distributed on nine transverse and three longitudinal profiles. Their quantitative 1D interpretations with different techniques yield to develop several alternative approaches, that enable us to derive and determine the hydrological parameters of the structures controlled by the groundwater distributions. Two different northern and southern geological structures separated by Hobs-Serdah water divided line were electrically characterized. Both of them are of very conductive zones of a resistivity less than 4 Ωm, and related to the intrusion of salty water in Quaternary and Paleogene aquifers. The qualitative interpretation of the iso-apparent resistivity maps for different AB/2 spacings has allowed the delineation of those two structures. Those two identified structures have their evident influences on the distributions of thicknesses, resistivity, salinity, hydraulic conductivity, and transmissivity of both Quaternary and Paleogene aquifers. The high resistivity exceeding 300 Ωm on the measured VES is a very good signal of the presence of basalt formation of upper Miocene age in Jebel Al Hass in the west and Jebel Shbith in the east. The geometry and the electrical characteristics of Quaternary and Paleogene aquifers and the top of Maestrichtian have been well recognized. Quaternary paleosabkhas, fractured zones and tectonic features of the subsurface of Khanasser valley have been delineated through analyzing VES distributions along the executed longitudinal and transverse profiles. Different empirical relationships have been already established through coupling geoelectrical resistivity and hydrochemical data, which allows to derive and establish different salinity maps for different AB/2 spacings, and to outline the boundaries between fresh, brackish and saline waters. Two different alternative approaches have been also developed for geophysically computing and estimating the hydraulic conductivity and the transmissivity of the aquifers in the study region. The different hydrogeophysical approaches developed in this integrated geophysical research project for water resource management have been successfully applied in Khanasser valley, and can be recommended to be practiced in similar worldwide areas.This paper is a general review which basically focuses on the role of geoelectrical surveys in characterizing and deriving the constraints and hydrogeological conditions in semi arid Khanasser valley region and its surroundings in Northern Syria. Schlumberger configuration has been used to carry out ninety six vertical electrical soundings VES, distributed on nine transverse and three longitudinal profiles. Their quantitative 1D interpretations with different techniques yield to develop several alternative approaches, that enable us to derive and determine the hydrological parameters of the structures controlled by the groundwater distributions. Two different northern and southern geological structures separated by Hobs-Serdah water divided line were electrically characterized. Both of them are of very conductive zones of a resistivity less than 4 Ωm, and related to the intrusion of salty water in Quaternary and Paleogene aquifers. The qualitative interpretation of the iso-apparent resistivity maps for different AB/2 spacings has allowed the delineation of those two structures. Those two identified structures have their evident influences on the distributions of thicknesses, resistivity, salinity, hydraulic conductiv
机译:ublishercopyright>? 2019年Jamal Asfahani,由Sciendo 2019发布。? 2019年Jamal Asfahani由Sciendo 2019. 。 Schlumberger配置已被用于执行九十六个垂直电气探测Ves,分布在九个横向和三个纵向型材上。它们具有不同技术的定量1D解释,产生几种替代方法,使我们能够导出并确定由地下水分布控制的结构的水文参数。两种不同的北部和南部地质结构分开,滚刀 - 塞达德水分开线分离为电表征。它们中的两者都是小于4Ωm的电阻率的非常导电区域,与季阳含水层中咸水的侵入有关。不同AB / 2间距的ISO表观电阻率图的定性解释允许描绘这两个结构。这两个鉴定的结构对四季和古血项含水层的厚度,电阻率,盐度,液压导电性和透射率的分布具有明显影响。测量Ves上超过300Ωm的高电阻率是西部和东部Jebel Shbith在Jebel Al Hass的上部内科时代的玄武岩形成的存在非常好的信号。四季度和古血液含水层的几何和电气特性以及Maestrichtian的顶部得到了很好的认可。通过分析沿着所执行的纵向和横向轮廓的VES分布来描绘了Qualtynary PaleoSabkhas,裂缝区域和Khanasser谷地下的构造特征。已经通过耦合电气电阻率和水化学数据建立了不同的经验关系,这允许为不同的AB / 2间距衍生和建立不同的盐度图,并概述新鲜,咸水和盐水之间的边界。还开发了两种不同的替代方法,用于地球物学计算和估算研究区域中含水量的液压导电性和透射率。在这种综合地球资源研究项目中开发的水资源管理的不同水电站已经成功地应用于Khanasser Valley,并且可以建议在类似的全球领域进行实践。本文是一个基本上侧重于焦点的一般审查电气电调查在北叙利亚北部半干旱Khanasser谷地区约束和水文地质条件下的作用及其在叙利亚北部周围环境中的作用。 Schlumberger配置已被用于执行九十六个垂直电气探测Ves,分布在九个横向和三个纵向型材上。它们具有不同技术的定量1D解释,产生几种替代方法,使我们能够导出并确定由地下水分布控制的结构的水文参数。两种不同的北部和南部地质结构分开,滚刀 - 塞达德水分开线分离为电表征。它们中的两者都是小于4Ωm的电阻率的非常导电区域,与季阳含水层中咸水的侵入有关。不同AB / 2间距的ISO表观电阻率图的定性解释允许描绘这两个结构。这两个鉴定的结构对厚度,电阻率,盐度,液压传导的分布有明显影响

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