Study on Implementation and Optimization of Cathodic Protection for Offshore Oil Platform Jacket

Dezhu Xu
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Abstract

The ocean is a harsh corrosion environment. The corrosion control in the full immersion area of offshore oil jacket generally adopts the sacrificial anode cathodic protection method. With the continuous improvement of the mining technology, the service life of offshore oil platform jacket will increase accordingly, and many jacket platforms are close to or even beyond the service life of the original ca-thodic protection design. By testing the jacket cathodic protection system, evaluating and analyzing the testing results and evaluating the jacket cathodic protection status, we can provide a basis for the service life of the jacket cathodic protection system, master the jacket cathodic protection evaluation methods, improve the utilization efficiency of the jacket, and create huge economic benefits. The measured values of anode potential are -1061mV ~ -1085mV, and the measured values of steel structure potential are - 1006mV ~ -1042mV, which meet the de-sign requirements, indicating that the cathodic protection system of the jacket is normal and the jacket is in a good protection state. The jacket sacrificial anode can meet the requirements of the target service life by verifying the remaining service life and results of the sacrificial anode.
海洋石油平台导管套阴极保护实施与优化研究
海洋是一个恶劣的腐蚀环境。海上油套全浸区腐蚀控制一般采用牺牲阳极阴极保护方法。随着开采技术的不断提高,海洋石油平台导管架的使用寿命也会相应增加,很多导管架平台已经接近甚至超过了原阴极保护设计的使用寿命。通过对夹套阴极保护系统进行测试,对测试结果进行评估和分析,对夹套阴极保护状态进行评估,可以为夹套阴极保护系统的使用寿命提供依据,掌握夹套阴极保护评估方法,提高夹套的利用效率,创造巨大的经济效益。阳极电位测量值为-1061 mv ~ -1085 mv,钢结构电位测量值为- 1006mV ~ -1042 mv,符合设计要求,说明夹套阴极保护系统正常,夹套处于良好的保护状态。通过对牺牲阳极剩余使用寿命和结果的验证,使夹套牺牲阳极能够满足目标使用寿命的要求。
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来源期刊
Biomedical engineering advances
Biomedical engineering advances Bioengineering, Biomedical Engineering
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