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交流输电线路对管道腐蚀影响的安全距离研究
姜子涛,周冰,董绍华,魏百发 ,刘冠一 ,汪麟,董廷涛
1 中国石油大学(北京)管道技术与安全研究中心,北京 102249 2 中国石油集团工程技术研究院,天津 300450 3 上海格麟倍科技发展有限公司,上海 201100
Research on safety distances between AC transmission lines and buried pipelines for mitigating AC corrosion
JIANG Zitao , ZHOU Bing, DONG Shaohua , WEI Baifa , LIU Guanyi, WANG Lin , DONG Tingtao
1 Pipeline Research Center, China University of Petroleum-Beijing, Beijing 102249, China 2 CNPC Research Institute of Engineering Technology, Tianjin 300450, China 3 Shanghai Gelinbei Technology & Development Co., LTD, Shanghai 201100, China

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摘要  结合管道交流腐蚀电流密度的判定条件,计算了不同土壤电阻率中安 全距离与并行长度的关系,建立了安全图谱。
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关键词 : 安全距离;交流干扰;电磁感应;输电线路;管道腐蚀
Abstract
With the rapid development of China's economy and the substantial construction of energy transmission networks,  
high voltage transmission lines and oil and gas pipelines usually form a "Right-of-Way", especially in space restricted areas. AC  
transmission lines can induce AC interference in the pipeline. When the AC current flows out from the defects of the pipeline’s  
coating, AC corrosion will be caused. The safe distances between AC transmission lines and pipelines should be clearly defined  
for keeping them away from each other at the routing stage, and possible interference on the pipeline will be avoided. In this pa
per, safety indicators for AC corrosion were first identified, then numerical simulation was used to establish the buried pipeline’s  
AC interference model. The safe distances in typical conditions were calculated. These include soil resistivity, pipeline coating,  
voltage level of HVAC transmission line, three-phase imbalance and pipeline diameter. The results indicated that the higher the  
voltage of the transmission line, the greater the safety distance required. For high-voltage AC transmission lines with voltage less  
than 220 kV and phase current less than 1000 A, when the distance between the pipelines and the high voltage transmission line  
was greater than 868 m, the AC corrosion risk of the pipelines could be ignored. The longer the parallel length was, the greater  
the safety distance required. When the parallel length was greater than 40 km, the safety distance did not change much. Soil  
resistivity and pipeline coating had obvious effects on the safety distance. The lower the resistivity of the soil, the greater the  
safety distance required, and therefore greater safety distance was required when the pipeline was in farmland or saline soil. The  
better the coating of the pipeline, the greater the safety distance was required, so a greater safety distance was needed for 3PE  
coated pipeline. Three-phase imbalance current had little effect on the safe distances, which indicated that the main source of AC  
interference for pipelines near safety distance was the position difference between phase lines, rather than the current imbalance.  
The pipeline diameter also had little effect on the safety distance. It was due to the longitudinal impedance of the pipeline being  
much lower than the leakage impedance, it had little effect on the longitudinal electric field. And on this basis, a safety distances  
map and evaluation method were established. Then, this method was applied to the AC interference assessment of a real pipeline,  
and the results showed that the interference risk of a pipeline can be estimated well from the safety distance. The results of this  
study provide a method and reference for dealing with pipelines and high voltage transmission lines in “Rights-of-Way”.


Key words: safe distances; AC interference; electromagnetic induction; AC transmission line; pipeline
收稿日期: 2021-12-29     
PACS:    
基金资助:国家自然基金青年基金(No. 52004312)、中国博士后科学基金(No. 2020M670582) 和中国石油大学( 北京) 科研基金(No. 2462020YXZZ044,
No. 2462020YXZZ045,No. 2462019YJRC012) 联合资助
通讯作者: jiangzitao1986@163.com
引用本文:   
姜子涛, 周冰, 董绍华, 魏百发, 刘冠一, 汪麟, 董廷涛. 交流输电线路对管道腐蚀影响的安全距离研究. 石油科学通报, 2021, 04: 638-647 JIANG Zitao, ZHOU Bing, DONG Shaohua, WEI Baifa, LIU Guanyi, WANG Lin, DONG Tingtao. Research on safety distances between AC transmission lines and buried pipelines for mitigating AC corrosion. Petroleum Science Bulletin, 2021, 04: 638-647. doi: 10.3969/j.issn.2096-1693.2021.04.045
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