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Optimising the location of anodes in cathodic protection systems

机译:在阴极保护系统中优化阳极位置

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摘要

Since cathodic protection (CP) systems were first applied, engineers have used experience and intensive monitoring to optimise their design to prevent corrosion. The use of sacrificial and impressed anodes on ship's hull, offshore structures and pipelines has become standard practice in order to preserve the structure and to protect coatings. However, the correct position and current of the anodes is a subject, which has been recently studied by the scientific community, since its adequacy is of vital importance to the performance of the CP system as a whole. Incorrect currents and positions would lead to unprotected or overprotected areas. Optimisation methods combined with the Boundary Elements Technology have become a useful technique to analyse this situation. Up to now, studies have been carried out using few anodes to optimise their current and positions on flat surfaces. Since the real structure of a vessel, for instance, is not flat, it is necessary to develop a tool which allows the optimisation of the anode position and the current no matter the shape of the model. In this paper, the development of this tool and its performance is analysed on the studied of the hull of a frigate.
机译:自从阴极保护(CP)系统首次应用以来,工程师们就利用经验和密集监控来优化设计以防止腐蚀。为了保护结构和保护涂层,在船体,海上结构和管道上使用牺牲阳极和压印阳极已成为标准做法。然而,阳极的正确位置和电流是一个主题,科学界最近对其进行了研究,因为其适当性对于整个CP系统的性能至关重要。不正确的电流和位置会导致未保护或过度保护的区域。与边界元素技术相结合的优化方法已成为分析这种情况的有用技术。迄今为止,已经进行了使用很少的阳极来优化其电流和在平坦表面上的位置的研究。由于例如容器的实际结构不是平坦的,因此有必要开发一种工具,无论模型的形状如何,该工具都可以优化阳极位置和电流。本文通过对某护卫舰船体的研究,分析了该工具的发展及其性能。

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