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Geoelectric Tomography and Electrical Methods, with Applicability in the Strategy for Identifying Contaminated Area

机译:电气切层和电气方法,具有识别污染区域的策略的适用性

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In this article, we would like discribing the technique underlying the investigations through computed geoelectric tomography done using the resistivity method. The method is designed to reveal information about those formations or bodies which display anormalies of the electrical conductivity and also has long been used to diferentiate the layers that have different levels of conductivity. Apparently these resistivities are usually functions of some variables which are in accordance with the depth of the investigation. The geological surveillance utilizes a wide variety of techniques, each based on different properties or characteristics of the soil. It is accoustomed for most electrical methods to define a function called the apparent resistivity response [ρa], which can be assessed and estimated from measurements. The giding principle of the method - The data collection is made uniformly throughout the profile,the density being determined by the distance between the electrodes and the type of the chosen device. Through one single stretch of the cable we can perform hundreds of multi-electrode measurements of resistivity, and thereby creating a 2D image of the sub-soil similar to a tomography. The data is then filtered and processed using a specialized software, which, unlike the Vertical Electric Survey method (SEV), performs a 2D inversion of all sections according to the lateral variations of the resistivities'-distribution throughout the length of the profile.
机译:在本文中,我们希望通过使用电阻率法完成通过计算的地磁断层扫描来解决依据的技术。该方法旨在揭示关于显示导电性的体制的结构或体的信息,并且还长期被用于差异具有不同电导率水平的层。显然这些电阻性通常是根据调查深度的一些变量的功能。地质监测利用各种各样的技术,每个技术基于土壤的不同性质或特征。据称是大多数电气方法来定义称为表观电阻率响应的功能[ρa],可以从测量评估和估计。该方法的GINGING原理 - 数据收集在整个轮廓中均匀地进行,密度由电极之间的距离和所选装置的类型确定。通过一个单一的电缆,我们可以执行数百个电阻率的多电极测量,从而产生类似于断层扫描的子土壤的2D图像。然后使用专用软件过滤并处理数据,该专用软件与垂直电动测量方法(SEV)不同,根据在轮廓的整个轮廓的整个长度的横向变化的横向变型中执行所有部分的2D反转。

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