欢迎登录材料期刊网

材料期刊网

高级检索

阐述了国内外阴极保护电位分布数值计算的研究概况,包括数学模型的建立、边界条件的选择以及所采用的数值计算方法,提出了该领域存在的问题及今后的发展方向.

参考文献

[1] Degiorgi V G;Wimmer S A .Geometric details and modeling accuracy requirements for shipboard impressed current cathodic protection system modeling[J].Engineering Analysis With Boundary Elements,2005,29:15-28.
[2] DeGiorgi VG.;Lucas KE.;Thomas ED. .Scale effects and verification of modeling of ship cathodic protection systems[J].Engineering analysis with boundary elements,1998(1):41-49.
[3] Zamani N G .Boundary element simulation of the cathodic protection system in a prototypic ship[J].Applied Mathematics and Computation,1988,26:119-134.
[4] Bialecki R A;Ostrowski Z;Kassab A J et al.Coupling BEM,FEM and analytic solutions in steady-state potential problems[J].Engineering Analysis With Boundary Elements,2002,26:597-611.
[5] Douglas P R;Mark E O .A mathematical model for the cathodic protection of tank bottoms[J].Corrosion Science,2005,47:849-868.
[6] Santiago JAF.;Telles JCF. .A solution technique for cathodic protection with dynamic boundary conditions by the boundary element method[J].Advances in engineering software,1999(9/11):663-671.
[7] A.M. Hassanein;G.K. Glass;N.R. Buenfeld .Protection current distribution in reinforced concrete cathodic protection Systems[J].Cement & concrete composites,2002(1):159-167.
[8] Degiorgi V G .Evaluation of perfect paint assumptions in modeling of cathodic protection systems[J].Engineering Analysis With Boundary Elements,2002,26:435-445.
[9] Krane S C;Alberto A S .Detailed modeling of corrosion maerocells on steel reinforcing in concrete[J].Corrosion Science,2001,43:1355-1372.
[10] 邱枫;徐乃欣 .用带状牺牲阳极对埋地钢管实施阴极保护时的电位和电流分布[J].中国腐蚀与防护学报,1997,17(02):106-110.
[11] 邱枫;徐乃欣 .码头钢管桩阴极保护时的电位分布[J].中国腐蚀与防护学报,1997,17(01):12-18.
[12] 邱枫;徐乃欣 .钢质贮罐底板外侧阴极保护时的电位分布[J].中国腐蚀与防护学报,1996,16(01):29-36.
[13] 张鸣镝;杜元龙 等.有限差分法计算海底管道阴极保护时的电位分布[J].中国腐蚀与防护学报,1994,14(01):77-81.
[14] 钱海军;刘小光;张树霞 等.管内阴极保护的数值模拟(Ⅱ)-有限差分法计算大口径管内的电位分布[J].化工机械,1997,24(05):281-284.
[15] 刘曼;殷正安;战广深 .流动场管内阴极保护的电位分布计算[J].大连理工大学学报,1998,38(05):599-302.
[16] 梁旭巍,吴中元,刘燕华.阴极保护系统中电流的优化控制[J].天津纺织工学院学报,1999(01):37-40.
[17] 马伟平,张国忠,梁昌华,张大鹏.深井阳极对储罐底板阴极保护的数值模拟[J].油气储运,2004(09):31-35.
[18] 梁旭巍,吴中元,孟宪级,庄新国.油田区域性阴极保护计算机辅助优化设计研究[J].天津工业大学学报,1998(05):90-94.
[19] 孟宪级;吴中元 等.区域性阴极保护数学模型算法的改进[J].中国腐蚀与防护学报,1998,18(03):221-224.
[20] Machczynski W.Computer simulation of cathodic protection of underground conductors of arbitrary[A].Singnpour,1994:1098-1091.
[21] 李相怡;翁永基 .金属储罐底板外侧阴极保护电位分布的解析计算法[J].石油学报,1998,19(03):98-114.
[22] Morgan,John.Cathodic Protection[M].Texas:National Association of Corrosion Engineers,1987:159-161.
[23] Uhlig H H;翁永基.腐蚀与腐蚀控制[M].北京:石油工业出版社,1985:516.
[24] Emenike C O .Mathematical modeling of cathodic protection systems for oil and gas facilities[J].Anti-Corrasion Methods and Materials,1995,42(04):6.
[25] Glass G K;Buenfeld N R .On the current density required to protect steel in atmospherically exposed concrete structure[J].Corrosion Science,1995,37(10):1643-1646.
[26] Glass G K;Buenfeld N R;Hassanein A M .Monitoring the passivation of steel in concrete induced by cathodic protection[J].Corrosion Science,1997,39(08):1451-1458.
[27] Ashworth V.Cathodic Protection-Theory and Practice[M].London:Ellis Horwcod Limited,1986:31.
[28] Thompson N G.Exploring the complexity of the mechanism of cathodic protection[A].Baltimore,1994:580.
[29] Tighe-Ford D J;Betten R A et al.Study of design criteria for ship impressed-current cathodic protection by stylized modeling[J].Corros Prey Control,1990,37(02):5-11.
[30] 陈绍伟;Hartt W H .钢在海水中的阴极极化特点及阴极保护系统设计中的新途径[J].腐蚀科学与防护技术,1996,8(01):17-25.
[31] Emenike C O .Mathematical modeling of cathodic protection systems for oil and gas facilities[J].Anti-Corrasion Methods and Materials,1995,42(04):6.
[32] Doig P;Flewitt P E J .A finite difference numerical analysis of galvanic corrosion[J].Eleetrochem J Soc,1979,126(12):2057-2063.
[33] Strommen R;Arild R .Computerized techniques applied in design of offshore cathodic protection systems[J].Materials Performance,1981,20(04):15-20.
[34] Helle H P E;Beck G H M;Ligtelijin J T .Numerical determination of potential distributions and current densities in muhi-electrode systems[J].Corrosion,1981,37(09):522-530.
[35] Kasper R G;April M G .Electro galvanic finite element analysis of partially protected marine structures[J].Corrosion,1983,39(05):181-188.
[36] Munn R S .A Mathematical model for a galvanic anode cathodic protection system[J].Materials Performance,1982,21(08):29-36.
[37] Chin D T;Sabde G M .Current Distribution and electrochemical environment in a eathodically protected crevice[J].Corrosion,2000,56(03):229-237.
[38] Chin D.T.;Sabde G.M. .Modeling Transport Process and Current Distribution in a Cathodically Protected Crevice[J].Corrosion: The Journal of Science and Engineering,2000(8):783-793.
[39] Cherry B W;Foo M;Sianw T H .Boundary element method analysis of the potential field associated with a corroding electrode[J].Corrosion,1986,42(11):654-662.
[40] Brichau F;Deconinck J .A numerical model for cathodic protection of buried pipes[J].Corrosion,1994,50(01):39-49.
[41] 刘向东,林莘,徐建源.12 kV/31.5 kA真空断路器灭弧室电场的数值计算[J].沈阳工业大学学报,2003(04):294-297,309.
[42] 喻海良,崔青玲,刘相华,赵宪明,田廷辽.300 kA铝电解槽三维电热场电位ANSYS分析[J].有色矿冶,2004(03):30-32.
[43] 卢斌先,王泽忠,王宜静,刘骁.故障传输线的电压响应分析[J].华北电力大学学报,2002(02):31-33.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%