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Determination of the auxiliary anode position via finite element method in impressed current cathodic protection

机译:压印电流阴极保护中的有限元法测定辅助阳极位置

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Purpose It is a challenge in the design to determine the feasible anode position and the supply current when the hull is protected by the impressed current cathodic protection method. It is difficult to obtain these parameters through traditional experimental methods due to the huge hull surface area and geometric complexity. This study aims to solve the problem by finite element method. Design/methodology/approach First, a great number of experiments need to be conducted; second, experiments are empirical; finally, there exist measurement errors, etc. All these factors make the experimental results less reliable. The application of the finite element method, combined with other technologies, is expected to overcome these deficiencies. In this paper, the combined Matlab and Comsol method was used to calculate various anode positions and corresponding protection areas with a series of input current conditions. The calculation is implemented via the script in Matlab. Findings As a result, the best design can be obtained. The results show that the method provided in this paper can replace the experiment to a certain extent, save human and material resources and reduce the design time. The method also can be applied to other similar fields, having a good universality. Originality/value This optimization method can be extended to other areas of relevant production and research, having a good universality.
机译:目的在设计方面是一种挑战,以确定船体受到压印电流阴极保护方法的保护时可行的阳极位置和电源电流。由于巨大的船体表面积和几何复杂性,难以通过传统的实验方法获得这些参数。本研究旨在通过有限元方法解决问题。设计/方法/方法首先,需要进行大量实验;其次,实验是经验的;最后,存在测量误差等。所有这些因素都使实验结果不太可靠。有限元方法的应用与其他技术相结合,预计将克服这些缺陷。在本文中,使用组合的MATLAB和COMSOL方法来计算各种阳极位置和具有一系列输入电流条件的相应保护区域。计算通过MATLAB中的脚本实现。结果,可以获得最佳设计。结果表明,本文提供的方法可以在一定程度上取代实验,节省人力和物质资源并减少设计时间。该方法还可以应用于其他类似领域,具有良好的普遍性。原创性/值这种优化方法可以扩展到相关生产和研究的其他领域,具有良好的普遍性。

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