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A mathematical model for the internal cathodic protection of cylindrical structures by wire anodes

机译:金属丝阳极对圆柱结构内部阴极保护的数学模型

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The applicability of a two-dimensional mathematical model of the impressed current cathodic protection (CP) system of the interior wall of a cylindrical structure was investigated. The modelled system was an axisymmetric cylindrical column filled with electrolyte with a wire anode running along its entire length and displaced from the column axis. Model inputs included anode and cathode dimensions, the anode-to-cathode distance, the electrolyte conductivity and limiting current density of oxygen reduction. A semi-analytical solution to the Laplace equation was used to compute the distribution of electrical potential. From these results, the nonuniform current density distribution was obtained to a first approximation by entering the computed values of the position-dependent cathode polarization potential into the nonlinear experimentally obtained polarization expression. The experimental electrical potential distribution compared well with that predicted by the model. Results showed the possibility of overprotection occurring in the system. The mathematical analysis was also extended to the case of a system with two wire anodes. [References: 23]
机译:研究了圆柱结构内壁外加电流阴极保护(CP)系统的二维数学模型的适用性。建模的系统是一个充满电解质的轴对称圆柱柱,阳极沿其整个长度延伸,并偏离柱轴。模型输入包括阳极和阴极的尺寸,阳极到阴极的距离,电解质的电导率和氧气还原的极限电流密度。使用拉普拉斯方程的半解析解来计算电势的分布。从这些结果中,通过将位置相关的阴极极化电位的计算值输入到非线性地通过实验获得的极化表达式中,可以得到不均匀的电流密度分布到第一近似值。实验电势分布与模型预测的相比较。结果表明,系统中可能会出现过度保护的情况。数学分析也扩展到具有两个线阳极的系统的情况。 [参考:23]

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