Apparent Soil Resistivity Data Processing Using Optimization Method

M. Telló, Lucas T. C. Pulz, Victor B. Telló, D. Gazzana, F. Vidor, R. Ferraz
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引用次数: 1

Abstract

The soil forms the basis of grounding studies and the main steps to obtain its model are: the acquisition, processing and interpretation of soil resistivity data. This paper refers to the processing stage, which were obtained through field measurements. In this context, the aim of this work is to present a methodology for the treatment of measured apparent soil resistivity data using the Wenner 4-Electrode Method in the area where a substation grounding grid will be installed. The methodology is characterized by the minimization of an objective function, which is applied to a set of measured apparent soil resistivity values in the various directions where the measurements were carried out. The comparison of the methodology that minimizes an objective function with the procedure that is usually applied on the ground grid design (arithmetic average of the measured resistivity data) indicated that both methodologies provide different models for the soil structure. However, the method usually adopted by designers should be used with caution, especially when there are significant variations in the apparent soil resistivity values. The optimization method aims to find the equivalent resistivity value of the soil which presents the smallest deviation between measured and calculated apparent soil resistivity values.
土壤视电阻率数据的优化处理
土壤是接地研究的基础,获得接地模型的主要步骤是:土壤电阻率数据的获取、处理和解释。本文指的是通过现场测量得到的处理阶段。在这种情况下,本工作的目的是提出一种方法,在将安装变电站接地网的地区使用温纳四电极法处理测量的土壤视电阻率数据。该方法的特点是目标函数的最小化,该目标函数应用于在进行测量的各个方向上测量的一组土壤视电阻率值。将目标函数最小化的方法与通常应用于地网设计的方法(测量电阻率数据的算术平均)进行比较,表明这两种方法为土壤结构提供了不同的模型。但是,设计人员通常采用的方法应谨慎使用,特别是在土壤视电阻率值变化较大的情况下。优化方法的目的是寻找土壤视电阻率测量值与计算值偏差最小的土壤等效电阻率值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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