Citation: | YUAN Xun, DU Yan-xia, LIANG Yi, QIN Run-zhi. Causes of high amplitude of pipe-to-soil potential under HVDC interference and influencing factors[J]. Chinese Journal of Engineering, 2021, 43(11): 1560-1568. doi: 10.13374/j.issn2095-9389.2020.06.02.002 |
[1] |
趙畹君. 高壓直流輸電工程技術. 北京: 中國電力出版社, 2004
Zhao W J. HVDC Engineering Technology. Beijing: China Electric Power Press, 2004
|
[2] |
廖敏夫, 張曉莉, 邢小羽, 等. 特高壓直流接地極入地電流對金屬管道腐蝕研究現狀與發展趨勢. 高壓電器, 2018, 54(7):44
Liao M F, Zhang X L, Xing X Y, et al. Research status and development trend of grounding current effect of UHVDC grounding electrode on corrosion of the metal pipelines. High Voltage Apparatus, 2018, 54(7): 44
|
[3] |
Cao G F, Gu Q L, Jiang Y T, et al. Current interference of HVDC ground electrode to buried pipelines and its personal safety distance. Nat Gas Ind B, 2019, 6(5): 427 doi: 10.1016/j.ngib.2019.03.001
|
[4] |
周毅, 姜子濤, 馬學民, 等. 陸上油氣管道受高壓直流接地極干擾的腐蝕與防護實例分析. 中國安全生產科學技術, 2019, 15(7):156
Zhou Y, Jiang Z T, Ma X M, et al. Case analysis on corrosion and protection of onshore oil and gas pipeline interfered by HVDC earth electrode. J Saf Sci Technol, 2019, 15(7): 156
|
[5] |
Wang Z G, Wang W J, Wang F Q, et al. Research on the corrosion effect of the UHVDC ground electrode current on the metal pipelines // IEEE International Conference on Power and Renewable Energy. Shanghai, 2016: 48
|
[6] |
Bi W X, Chen H Y, Li Z J, et al. HVDC interference to buried pipeline: numerical modeling and continuous P/S potential monitoring // CORROSION 2016. Vancouver, 2016: NACE-2016-7714
|
[7] |
Jiang Z T, Cao G F, Ge C G, et al. Study on the mechanism and influencing factors of HVDC interference // CORROSION 2017. New Orleans, 2017: NACE-2017-9293
|
[8] |
李興源. 高壓直流輸電系統. 北京: 科學技術出版社, 2010
Li X Y. HVDC System. Beijing: Science and Technology Press, 2010
|
[9] |
李振軍. 高壓/特高壓直流輸電系統對埋地鋼質管道干擾的現場測試與分析. 腐蝕與防護, 2017, 38(2):142 doi: 10.11973/fsyfh-201702012
Li Z J. Field test and analysis of interference of high or ultra high voltage direct current transmission system to underground steel pipeline. Corros Prot, 2017, 38(2): 142 doi: 10.11973/fsyfh-201702012
|
[10] |
秦潤之, 杜艷霞, 姜子濤, 等. 高壓直流輸電系統對埋地金屬管道的干擾研究現狀. 腐蝕科學與防護技術, 2016, 28(3):263
Qin R Z, Du Y X, Jiang Z T, et al. Research status of interference of HVDC transmission system to buried metal pipeline. Corros Sci Prot Technol, 2016, 28(3): 263
|
[11] |
吳江偉, 宋鵬. 高壓入地電流對埋地管道電位的影響. 電氣工程, 2017, 5(2):196
Wu J W, Song P. Influence of the high voltage ground current on buried pipeline’s potential. J Electr Eng, 2017, 5(2): 196
|
[12] |
李兆玲. 高壓直流接地極對埋地管道的干擾與防護. 管道技術與設備, 2017(3):39 doi: 10.3969/j.issn.1004-9614.2017.03.013
Li Z L. Interference and protection on buried pipeline of high voltage direct current grounding electrode. Pipeline Technol Equip, 2017(3): 39 doi: 10.3969/j.issn.1004-9614.2017.03.013
|
[13] |
Gong Y, Xue C L, Yuan Z L, et al. Advanced analysis of HVDC electrodes interference on neighboring pipelines. J Power Energy Eng, 2015, 3: 332 doi: 10.4236/jpee.2015.34045
|
[14] |
Qin R Z, Du Y X, Jiang Z T, et al. Corrosion behavior of X80 pipe steel under HVDC interference in sandy soil. Metals, 2018, 8(10): 809 doi: 10.3390/met8100809
|
[15] |
Qin R Z, Du Y X, Xu Z C, et al. Anodic polarization behavior of X80 steel in Na2SO4 solution under high potential and current density conditions. Materials, 2019, 12(3): 394 doi: 10.3390/ma12030394
|
[16] |
應斌. 高壓直流輸電系統接地極對長輸管道安全運行的影響. 油氣田地面工程, 2014, 33(7):23 doi: 10.3969/j.issn.1006-6896.2014.7.015
Ying B. The influence of HVDC grounding electrode on the safe operation of long-distance pipeline. Oil-Gasfield Surf Eng, 2014, 33(7): 23 doi: 10.3969/j.issn.1006-6896.2014.7.015
|
[17] |
譚春波, 許罡, 許明忠, 等. 接地極單極大地回路電流運行對天然氣管道的影響. 油氣儲運, 2018, 37(6):670
Tan C B, Xu G, Xu M Z, et al. Effect of monopolar earth-return operation of grounding electrode on natural gas pipelines. Oil Gas Storage Transp, 2018, 37(6): 670
|
[18] |
孫建桄, 曹國飛, 韓昌柴, 等. 高壓直流輸電系統接地極對西氣東輸管道的影響. 腐蝕與防護, 2017, 38(8):631 doi: 10.11973/fsyfh-201708012
Sun J G, Cao G F, Han C C, et al. Influence of HVDC transmission system ground electrode on West-East Gas Pipeline. Corros Prot, 2017, 38(8): 631 doi: 10.11973/fsyfh-201708012
|
[19] |
查鑫堂, 張建文, 陳勝利, 等. 雜散電流干擾和陰極保護作用下碳鋼腐蝕規律研究. 表面技術, 2015, 44(12):12
Zha X T, Zhang J W, Chen S L, et al. Corrosion behavior of carbon steel in interference of stray current and cathodic protection. Surf Technol, 2015, 44(12): 12
|
[20] |
Nicholson P. High voltage direct current interference with underground/underwater pipelines // Corrosion 2010. San Antonio, 2010: NACE-2010-10102
|
[21] |
Fowles D T. Effects of HVDC on cast-iron pipe systems. J AWWA, 1971, 63(4): 233 doi: 10.1002/j.1551-8833.1971.tb04072.x
|
[22] |
Qin R Z, Du Y X, Peng G Z, et al. High voltage direct current interference on buried pipelines: case study and mitigation design // CORROSION 2017. New Orleans, 2017: NACE-2017-9049
|
[23] |
青攀. 高壓直流接地極電流對高鐵牽引網的影響硏究[學位論文]. 北京: 華北電力大學, 2016
Qing P. Research on Influence of HVDC Ground Electrode Current on High-speed Railway Traction Net [Dissertation]. Beijing: North China Electric Power University, 2016
|
[24] |
Nejad B M, Blumhagen L. Inductive interference from HVDC transmission lines on close proximity pipeline segments // CORROSION 2018. Phoenix, 2018: NACE-2018-10913
|