Modeling of electromagnetic fields of pipelines cathodic protection systems in horizontally layered medium

V. N. Krizsky, P. N. Aleksandrov, A. A. Kovalskii, S. Viktorov
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Abstract

Design of cathodic protection systems of the trunk pipeline is regulated by current standards, based on the condition of uniformity and constancy of the electric conductivity of the multilayered half-space surrounding the pipeline. The current mathematical models of such systems also use an average value of the medium electric conductivity, which does not fully reflect the actual characteristics of the soil, in which the pipeline is laid. The authors present a method that accounts for the thickness and electrical conductivity of individual beds in a vertically-inhomogeneous, horizontally layered medium (the most practically appropriate case). Using method of computational experiment, the authors showed the importance of accounting for the effect of the medium layers structure and electrical resistivity on the protective voltage of the electric current in the cathodic protection system for underground trunk pipeline and studied the magnetic field sensitivity dependence on the insulation resistance of the pipeline defect-containing segments and on the altitude of data acquisition.
水平层状介质中管道阴极保护系统电磁场建模
主干管阴极保护系统的设计依据现行标准,以管道周围多层半空间电导率均匀和恒定的条件为依据。目前这类系统的数学模型也使用了介质电导率的平均值,这并不能完全反映管道铺设所在土壤的实际特性。作者提出了一种计算垂直不均匀、水平分层介质中各层厚度和电导率的方法(这是最实际适用的情况)。采用计算实验的方法,说明了在地下干管阴极保护系统中,考虑介质层结构和电阻率对电流保护电压影响的重要性,并研究了磁场灵敏度与管道含缺陷段绝缘电阻和数据采集高度的关系。
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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