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首页> 外文期刊>Journal of the Electrochemical Society >Finite Element Modeling for Cathodic Protection of Pipelines under Simulating Thermocline Environment in Deep Water Using a Dynamic Boundary Condition
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Finite Element Modeling for Cathodic Protection of Pipelines under Simulating Thermocline Environment in Deep Water Using a Dynamic Boundary Condition

机译:有限元建模的阴极保护管道模拟温跃层以下使用一个动态环境的深水边界条件

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摘要

A finite element model (FEM) was established to calculate the cathodic protection (CP) potential distribution on pipelines, under the environment of the thermocline structure in deep water. Supplemental boundary conditions were applied on the interfaces of two different mediums in the thermocline model. To solve the problem of time-dependent polarization curves due to calcareous deposits formed on the steel surface during CP in seawater, a dynamic boundary condition based on Ohm's law was proposed, instead of polarization curves or the Butler-Volmer equation. A good agreement was obtained between the calculated and experimental potential distributions, which proved that the model was practical and feasible. The anode placement studies revealed that the anode could supply a more efficient protection when it was placed at the thermocline zone rather than the surface zone or the deep water zone.
机译:建立了一个有限元模型(FEM)计算阴极保护(CP)的潜力分布在管道、环境在深水中温跃层的结构。补充边界条件应用于接口的两种不同的媒介温跃层模型。由于时间极化曲线钙质沉积在钢表面形成的在CP在海水中,动态边界提出了基于欧姆定律的条件,相反的极化曲线或Butler-Volmer方程。计算和实验之间的获得潜在的分布,证明了模型是切实可行的。研究表明,阳极位置提供一个更有效的保护的时候而不是放在温跃层区表面区或深水区。

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