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作 者:谷丰 赵茜 庄大伟 杜艳霞 GU Feng;ZHAO Qian;ZHUANG Dawei;DU Yanxia(Beijing Engineering Branch,China Petroleum Engineering&Construction Corporation,Beijing 100085,China;Institute for Advanced Materials and Technology,University of Science and Technology Beijing,Beijing 100083,China)
机构地区:[1]中国石油工程建设有限公司北京设计分公司,北京100085 [2]北京科技大学新材料技术研究院,北京100083
出 处:《腐蚀与防护》2023年第8期56-61,共6页Corrosion & Protection
摘 要:通过电化学测试对高温高盐储水罐的极化特性进行了研究,获得了腐蚀电流和阴极保护电流密度的规律;对外加电流阴保系统的辅助阳极进行优化设计,通过数值模拟方法计算采用不同阳极保护方案时储水罐的阴极保护电位分布,最终确定最佳方案。结果表明:储水罐的直径为15.25 m时,综合阳极最佳的数量为8支,每支阳极覆盖的角度为45°;同时随着阳极长度的增加,储水罐电位均匀性得到改善;随着储水罐尺寸的增大,其保护电流需求量增加。The polarization characteristics of storage tank for high temperature and high salt water were studied by electrochemical testing,and the rules of corrosion current and cathodic protection current density were obtained.The design of auxiliary anodes in the impressed current cathodic protection(ICCP)system was optimized.The cathodic protection potential distributions in the storage tank with different anode protection schemes were calculated by numerical simulation,and the optimal scheme was finally determined.The results showed that when the diameter of the water storage tank was 15.25 m,the optimal number of auxiliary anodes was 8,and the covering angle of each anode was 45°.At the same time,with the increase of the anode length,the potential uniformity was improved.With the increase of the size of the water storage tank,the demand for protection current increased.
关 键 词:储水罐内壁 外加电流阴极保护 数值模拟 极化特性 阳极优化分布
分 类 号:TE8[石油与天然气工程—油气储运工程]
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