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Investigation of Design Methodology for Impressed Current Cathodic Protection Optimum System

机译:外加电流阴极保护优化系统设计方法研究

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摘要

In this paper, physical scale modeling was employed to identify the configurations of ICCP system and the electric field signatures. Computational boundary element modeling technique has been used to simulate the performance of the CP system and to predict the associated electric fields signatures. The optimization methods combined with the computer models and physical scale modeling will be presented here, which enable the optimum system design to be achieved both in terms of the location and current output of the anode but also in the location of reference electrodes for impressed current cathodic protection(ICCP) systems. The combined methodology was utilized to determine optimal placement of ICCP components (anodes and reference electrodes) and to evaluate performance of ICCP system for the 2%, 10% and 14% wetted hull coatings loss. The objective is to design the system to minimise the electric field while at the same time provide adequate protection for the ship. The results show that experimental scale modeling and computational modeling techniques can be used in concert to design an optimum ICCP system and to provide information for quickly analysis of the system and its surrounding environment.
机译:在本文中,物理比例模型被用来识别ICCP系统的配置和电场特征。计算边界元建模技术已用于模拟CP系统的性能并预测相关的电场签名。此处将介绍与计算机模型和物理比例模型相结合的优化方法,这些方法可以在阳极的位置和电流输出以及外加电流阴极的参考电极的位置方面实现最佳系统设计保护(ICCP)系统。组合的方法用于确定ICCP组件(阳极和参比电极)的最佳位置,并评估ICCP系统对2%,10%和14%润湿的船体涂层损失的性能。目的是设计该系统以使电场最小化,同时为船舶提供足够的保护。结果表明,可以结合使用实验规模建模和计算建模技术来设计最佳的ICCP系统,并为快速分析系统及其周围环境提供信息。

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