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Numerical modelling of cathodic protection systems for deep well casings

机译:深井外壳阴极保护系统的数值模拟

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This work is focused on the 3D simulation of cathodic protection (CP) systems for metallic deep well casings immersed in stratified soil. The soil is considered as a multi-layered electrolyte with electric conductivity, which varies from layer to layer. Given a CP system, the aim of the simulation is to predict the level of protection (including the normal current entering the structure) against corrosion along the well casing. It is common practice to fill the annular space between soil and metallic structure with cement along the whole depth. The paper presents a modelling approach which incorporates this feature. In addition, a unique CP system may be used to protect more than one well. In this case, the simulation is used to analyse problems of interference and load unbalance to the electrical resistance in the power lines and flow lines. The modelling approach is aimed at simplifying the model design, especially for dealing with multi-layered electrolyte, and improving the accuracy over existing traditional techniques, which entail a detailed and time consuming representation in the model of the interfaces between different layers of the electrolyte. The effects of different scenarios of electrolytes on the CP system are considered.
机译:这项工作主要集中在浸入分层土壤中的金属深井外壳的阴极保护(CP)系统的3D模拟。土壤被认为是具有导电性的多层电解质,其从层到层不同。鉴于CP系统,模拟的目的是预测沿着井壳体腐蚀的保护水平(包括进入结构的正常电流)。常常做法沿着整个深度填充土壤和金属结构之间的环形空间。本文介绍了一种包含此功能的建模方法。此外,唯一的CP系统可用于保护多于一个井。在这种情况下,模拟用于分析电力线和流线中的电阻的干扰和负载不平衡的问题。建模方法旨在简化模型设计,特别是为了处理多层电解质,提高现有传统技术的准确性,这需要在电解质的不同层之间的界面的模型中进行详细和耗时的表示。考虑了电解质电解质不同场景的影响。

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