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船舶和超级游艇阴极保护当前设计标准的批判性分析

A Critical Analysis on the Current Design Criteria for Cathodic Protection of Ships and Superyachts.

作者信息

Clematis Davide, Marroccu Alessandro, Panizza Marco, Barbucci Antonio

机构信息

Department of Civil, Chemical and Environmental Engineering, University of Genova, 16145 Genova, Italy.

Italy Operational Yachting Marine Surveyor, RINA Services S.p.A., Via Corsica 12, 16128 Genova, Italy.

出版信息

Materials (Basel). 2022 Apr 4;15(7):2645. doi: 10.3390/ma15072645.

Abstract

Classification Society and ISO standard regulate the design of cathodic protection (CP) plans of ships and superyachts. However, due to shipyards' long experience, the hull vessel protection plans often rely on an adaptation of previous CP designs for similar ships. This simple practice could expose ships to low protection or overprotection. Here, the protection plan of an existing 42 m superyacht is considered to highlight critical CP design issues. The numerical analysis gives evidence of discrepancies between the CP design proposed in accordance with ISO standard and the protection plan that was actually implemented. Indeed, for a proper protection plan, the anode weight according to the ISO standard is 2.7 kg, whereas the real protection plan uses a 7 kg anode. The numerical optimization highlights an optimal anode mass of 5 kg (-28.5% in weight). It provides sufficient protection for the expected lifetime, and will preserve the system in cases of damage to the hull and a consequent increase in the breakdown factor. This new solution underlines the importance and necessity of improving cathodic protection plan design.

摘要

船级社和国际标准化组织(ISO)标准对船舶和超级游艇的阴极保护(CP)计划设计进行规范。然而,由于造船厂经验丰富,船体保护计划往往依赖于对类似船舶先前CP设计的调整。这种简单做法可能会使船舶面临低保护或过度保护的风险。在此,以一艘现有的42米超级游艇的保护计划为例,突出关键的CP设计问题。数值分析证明了根据ISO标准提出的CP设计与实际实施的保护计划之间存在差异。事实上,对于一个合适的保护计划,根据ISO标准阳极重量为2.7千克,而实际保护计划使用的是7千克阳极。数值优化突出了5千克(重量减少28.5%)的最佳阳极质量。它为预期寿命提供了足够的保护,并且在船体受损以及故障系数随之增加的情况下能保护系统。这种新解决方案强调了改进阴极保护计划设计的重要性和必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b56e/9000750/0637a846bf83/materials-15-02645-g001.jpg

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