管道系统交流干扰的预测与缓解

IF 2.7 4区 材料科学 Q3 ELECTROCHEMISTRY
A. Thakur, A. K. Arya, pushpanth Sharma
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引用次数: 3

摘要

摘要:本文的目的是预测和减轻输电线路对埋地管道系统的交流干扰。对交流干扰进行了建模和现场验证。文章还提出了优化缓解措施的问题。本文利用现场土壤电阻率、输电线路和管道细节数据,利用电流分布电磁干扰接地和土壤结构分析(CDEGS)软件建立了预测管道系统交流干扰的模型。通过现场实测对模型进行了验证,并考虑了后期缓解措施。优化缓解措施,制定经济的缓解计划。该案例演示了如何使用建模技术来预测和减轻管道上的交流干扰。模拟结果的现场验证有助于改进模拟结果,规划优化的缓解措施。该研究需要提供与所考虑的管道系统相关的全面现场数据。实地数据的准确性可能对研究结果有影响。这项研究使设计和优化利用建模缓解措施成为可能。与现场测量结果的比较有助于实现所需的管道系统完整性,防止交流腐蚀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prediction and mitigation of AC interference on the pipeline system
Abstract The purpose of this paper is to predict and mitigate AC interference on buried pipeline systems due to transmission lines. Modeling and field verification of AC interference is done. The article also presents the issue of optimizing the mitigation measures. The paper uses the field data on soil resistivity, transmission line, and pipeline details to develop a model using current distribution electromagnetic interference grounding and soil structure analysis (CDEGS) software to predict the AC interference on the pipeline system. The model is validated with field measurements, and post-mitigation measures are considered. Mitigation measures are optimized to develop an economical mitigation plan. The case demonstrates the use of modeling techniques to predict and mitigate AC interference on pipelines. The field validation of modeling results helps improve the modeling results and plan optimized mitigation measures. The study requires providing comprehensive field data relevant to the pipeline system under consideration. The accuracy of the field data may have a bearing on the outcome of the study. The study enables designing and optimizing mitigation measures using modeling. Comparisons with field measurements help achieve desired pipeline system integrity against AC corrosion.
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来源期刊
Corrosion Reviews
Corrosion Reviews 工程技术-材料科学:膜
CiteScore
5.20
自引率
3.10%
发文量
44
审稿时长
4.5 months
期刊介绍: Corrosion Reviews is an international bimonthly journal devoted to critical reviews and, to a lesser extent, outstanding original articles that are key to advancing the understanding and application of corrosion science and engineering in the service of society. Papers may be of a theoretical, experimental or practical nature, provided that they make a significant contribution to knowledge in the field.
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