DESIGN AND SIMULATION OF ANTICORROSION SCHEME OF OBSERVATION BUOY FOR WAVE POWER PLANT

Zhang Yaqun, Li Xianhao, Sheng Songwei, Wang Kunling, Huang Zhenxin, Gao Guifei

Acta Energiae Solaris Sinica ›› 2024, Vol. 45 ›› Issue (2) : 213-217.

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Acta Energiae Solaris Sinica ›› 2024, Vol. 45 ›› Issue (2) : 213-217. DOI: 10.19912/j.0254-0096.tynxb.2022-1619

DESIGN AND SIMULATION OF ANTICORROSION SCHEME OF OBSERVATION BUOY FOR WAVE POWER PLANT

  • Zhang Yaqun1,2, Li Xianhao, Sheng Songwei1,2, Wang Kunling1,2, Huang Zhenxin1,2, Gao Guifei4
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Abstract

In this paper, a wave energy power observation buoy is divided into different fouling areas by analyzing its working principle, motion characteristics and corrosion environment of each system. Firstly, through considering the current anti-corrosion methods, the complex marine corrosion environment of buoys, cost and construction efficiency, a corrosion protection method combining anti-corrosion paint coating and catholic protection is proposed. Based on which, an anti-corrosion system with impressed current catholic protection and key parameters are designed. Furthermore, numerical simulations are carried out and reveal that better anti-corrosion effect can be achieved by setting the above anti-corrosion system along the flank of the main buoy.

Key words

wave energy conversion / buoys / corrosion / floating wave power generation device / catholic protection

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Zhang Yaqun, Li Xianhao, Sheng Songwei, Wang Kunling, Huang Zhenxin, Gao Guifei. DESIGN AND SIMULATION OF ANTICORROSION SCHEME OF OBSERVATION BUOY FOR WAVE POWER PLANT[J]. Acta Energiae Solaris Sinica. 2024, 45(2): 213-217 https://doi.org/10.19912/j.0254-0096.tynxb.2022-1619

References

[1] 侯保荣. 海工设施防腐蚀技术研究及应用[J]. 公路交通科技, 2010, 27(S1): 5-8.
HOU B R.Research and application of anti-corrosion technique for marine structure[J]. Journal of highway and transportation research and development, 2010, 27(S1): 5-8.
[2] 温家浩, 杨中桂, 白洁, 等. 海上风电设备防腐技术与展望[J]. 船舶工程, 2022, 44(S1): 57-60.
WEN J H, YANG Z G, BAI J, et al.Anticorrosion technology and prospect of offshore wind power equipment[J]. Ship engineering, 2022, 44(S1): 57-60.
[3] 叶世锋, 禹鹏, 冯乃华, 等. 关于波浪能发电装置的防腐措施讨论[J]. 科技创新与应用, 2019(7): 119-120.
YE S F, YU P, FENG N H, et al.Discussion on anti-corrosion measures of wave power generation plant[J]. Technology innovation and application, 2019(7): 119-120.
[4] 官建安, 李成龙, 张军. 波浪能发电装置的防腐蚀措施[J]. 腐蚀与防护, 2019, 40(1): 38-42.
GUAN J A, LI C L, ZHANG J.Corrosion protection of wave energy generation devices[J]. Corrosion & protection, 2019, 40(1): 38-42.
[5] 廖莹, 李娜, 李连军, 等. 海洋钢结构防腐蚀技术综述[J]. 四川建筑, 2022, 42(3): 264-269.
LIAO Y, LI N, LI L J, et al.Summary of anti-corrosion technology for offshore steel structures[J]. Sichuan architecture, 2022, 42(3): 264-269.
[6] 薛伟航. 海洋平台结构腐蚀规律及长效防腐技术分析[J]. 中国石油和化工标准与质量, 2022, 42(6): 12-14.
XUE W H.Analysis of corrosion law and long-term anti-corrosion technology of offshore platform structure[J]. China petroleum and chemical standard and quality, 2022, 42(6): 12-14.
[7] 王剑. 海洋工程结构与船舶防腐蚀技术探究[J]. 船舶物资与市场, 2022, 30(2): 62-64.
WANG J.Research on marine engineering structure and ship anti-corrosion technology[J]. Marine equipment/materials & marketing, 2022, 30(2): 62-64.
[8] 王远志. 船舶腐蚀原因及防腐措施分析[J]. 科技创新导报, 2020, 17(1): 63-64.
WANG Y Z.Analysis on the causes of ship corrosion and anti-corrosion measures[J]. Science and technology innovation herald, 2020, 17(1): 63-64.
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