液固两相流条件下的金属冲刷腐蚀严重影响油气田安全生产.综述了在液固两相流条件下金属材料冲刷腐蚀的研究现状,列举了液固两相流对金属冲刷腐蚀的研究方法,探讨了液固两相流对金属冲刷腐蚀的机理,并对其相关研究的发展趋势进行展望.
参考文献
[1] | 代真,沈士明,丁国铨.金属在固液两相流体中的冲刷腐蚀及其防护[J].腐蚀与防护,2007(02):86-89. |
[2] | 徐哲 .液固两相流条件下P110钢冲刷腐蚀研究[D].大庆:东北石油大学,2011. |
[3] | 王建才.液固两相流体冲刷腐蚀的协同作用[J].河南科技,2013(19):60. |
[4] | 田兴玲,林玉珍,刘景军,雍兴跃.碳钢在液/固双相管流中的磨损腐蚀机理研究[J].北京化工大学学报(自然科学版),2003(05):40-43. |
[5] | Yang Y;Cheng Y F .Parametric effects on the erosion-corrosion rate and mechanism of carbon steel pipes in oil sands slurry[J].WEAR,2012,276/277:141-148. |
[6] | Syrett B C .Erosion-corrosion of copper-nickle alloys in seawater and other aqueous environments - A literature review[J].CORROSION,1976,32:242-252. |
[7] | 翁永基.含沙多相流对金属管道腐蚀-磨损及其监测[J].管道技术与设备,2002(04):26-29. |
[8] | Zheng Z B;Zheng Y G;Zhou X et al.Determination of the critical flow velocities for erosion-corrosion of passive materials under impingement by NaCl solution containing sand[J].Corrosion Science,2014,88(11):187-196. |
[9] | 刘新宽;方其先 .冲刷腐蚀对不锈钢表面状态的影响[J].西安交通大学学报,1998,32(4):105-107. |
[10] | 杨向同,周鹏遥,丁亮亮,王治国,窦益华.P110油管用钢液固两相流体冲蚀实验研究[J].科学技术与工程,2014(30):140-143. |
[11] | 王凯 .油井管材料液固两相流体冲刷腐蚀研究[D].西安石油大学,2013. |
[12] | 李涌泉,田进.pH值对N80钢固液两相冲刷腐蚀的影响[J].表面技术,2013(05):29-31. |
[13] | 李涌泉,余斌高,刘建强,李锋.N80钢抗固液两相冲刷腐蚀行为的研究[J].表面技术,2013(06):37-39. |
[14] | 邢建东,高义民,张国赏.不锈钢与高碳钢的冲刷腐蚀磨损试验研究[J].西安交通大学学报,2004(05):469-473. |
[15] | Mc Laury B S;Santos G;Mazumder Q H et al.Distribution of Sand Particles in Horizontal and Vertical Annular Multiphase Flow in Pipes and the Effects on Sand Erosion[J].Journal of Energy Resources Technology,2011,133:023001. |
[16] | 徐姚 .液固两相流冲刷腐蚀数值模拟研究[D].北京化工大学,2001. |
[17] | 丁矿,朱宏武,张建华,朱君尧,罗璇.直角弯管内液固两相流固体颗粒冲蚀磨损分析[J].油气储运,2013(03):241-246. |
[18] | 易卫国,杨谦,李群松.稀薄颗粒流体对弯管冲蚀的数值模拟[J].湖南师范大学自然科学学报,2012(05):56-59,63. |
[19] | 郑玉贵,姚治铭,张玉生,魏翔云,柯伟.冲刷与腐蚀的交互作用与耐冲刷腐蚀合金设计[J].金属学报,2000(01):51-54. |
[20] | 张安峰,王豫跃,邢建东,李长久.两种涂层和两种钢在液/固两相流中冲刷与腐蚀的交互作用[J].金属学报,2004(04):411-415. |
[21] | H. Meng;X. Hu;A. Neville .A systematic erosion-corrosion study of two stainless steels in marine conditions via experimental design[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,2007(1/6):355-362. |
[22] | Tang X;Xu L Y;Cheng Y F .Electrochemical corrosion behavior of X-65 steel in the simulated oil-sand slurry.Ⅱ: Synergism of erosion and corrosion[J].Corrosion Science,2008,50(5):1469-1474. |
[23] | 陈君,李全安,张清,王建章,阎逢元.AISI316不锈钢腐蚀磨损交互作用的研究[J].中国腐蚀与防护学报,2014(05):433-438. |
[24] | 雍兴跃,刘景军,林玉珍.流动腐蚀介质中双相不锈钢的电化学阻抗谱[J].化工学报,2003(12):1713-1718. |
[25] | Ramakrishna Malka;Srdjan Nesic;Daniel A. Gulino .Erosion-corrosion and synergistic effects in disturbed liquid-particle flow[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,2007(7/8):791-799. |
[26] | Zeng L;Zhang G A;Guo X P .Erosion-corrosion at different locations of X65 carbon steel elbow[J].Corrosion Science,2014,85(8):318-330. |
[27] | 雍兴跃,林玉珍,刘景军,贺志鹏.碳钢在管流体系中的流动腐蚀动力学模型[J].化工学报,2002(07):680-684. |
[28] | 刘景军,林玉珍,田兴玲,雍兴跃,李效玉.双相不锈钢管固液两相流动腐蚀的数值模拟[J].化工学报,2004(03):408-413. |
[29] | 乔岩欣,刘飞华,任爱,姜胜利,郑玉贵.高氮钢和321不锈钢的冲刷腐蚀行为[J].中国腐蚀与防护学报,2012(02):141-145. |
[30] | 李多 .紫铜在人工海水中的冲刷腐蚀行为研究[D].哈尔滨工程大学,2013. |
[31] | 张福祥,巴旦,刘洪涛,李臻,窦益华.压裂过程超级13Cr油管冲刷腐蚀交互作用研究[J].石油机械,2014(8):89-93. |
[32] | Aminul Islam M;Farhat Zoheir N .The synergistic effect between erosion and corrosion of API pipeline in CO2 and saline medium[J].Trrbology International,2013,68:26-34. |
[33] | Mahdi E;Rauf A;Eltai E O .Effect of temperature and erosion on pitting corrosion of X100 steel in aqueous silica slurries containing bicarbonate and chloride content[J].Corrosion Science,2014,83(6):48-58. |
[34] | 陈君,李全安,张清,王建章,阎逢元.金属腐蚀磨损的研究进展[J].腐蚀科学与防护技术,2014(05):474-478. |
[35] | Stack M M;Abd El-Badia T M .Mapping erosion-corrosion of WC/Co-Cr based composite coatings:particle velocity and applied potential effects[J].Surface and Coatings Technology,2006,201(3/4):1335-1347. |
[36] | Arrbo S;Barker R;Hu X M et al.Erosion-Corrosion Behaviour of Lean Duplex Stainless Steels in 3.5 % NaCl Solution[J].WEAR,2012,302(1/2):1602-1608. |
[37] | Abedini M;Ghasemi H M .Synergistic erosion-corrosion behavior of Al-brass alloy at various impingement angles[J].WEAR,2014,319(1/2):49-55. |
[38] | Stack M M;Abdulrahman G H .Mapping erosion-corrosion of carbon steel in oil-water solutions:Effects of velocity and applied potential[J].WEAR,2012,274:401-413. |
[39] | Telfer C G;Stack M M;Jana B D .Particle concentration and size effects on the erosion-corrosion of pure metals in aqueous slurries[J].Trrbology International,2012,53:35-44. |
[40] | 杜娟 .TUP紫铜及B10铜镍合金流动海水冲刷腐蚀行为研究[D].中国海洋大学,2007. |
[41] | 尹承军 .B10合金在模拟海水中的冲刷腐蚀研究[D].哈尔滨工程大学,2012. |
[42] | 曾凡伟 .B30铜镍合金人工海水中的冲刷腐蚀行为研究[D].哈尔滨工程大学,2012. |
[43] | 李强,唐晓,李焰.冲刷腐蚀研究方法进展[J].中国腐蚀与防护学报,2014(05):399-409. |
[44] | G. T. Burstein;K. Sasaki .Effect of impact angle on the slurry erosion-corrosion of 304L stainless steel[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,2000(1/2):80-94. |
[45] | Frederic F;Thierry F;Jean G et al.Acoustic emission study of active passive transitions during carbon steel erosion corrosion in concentrated sulfuric acid[J].Corrosion Science,2002,44(7):1529-1540. |
[46] | Mohamed S;Ibrahim H;Hany M.Monitoring ErosionCorrosion in Carbon Steel Elbow Using Acoustic Emission Technique[A].Granada:University of Granada,2012:231-242. |
[47] | Ukpai J I;Barker R;Hu X M et al.Exploring the erosive wear of X65 carbon steel by acoustic emission method[J].WEAR,2013,301(1/2):370-382. |
[48] | Ukpai J I;Barker R;Hu X .Determination of particle impacts and impact energy in the erosion of X65 carbon steel using acoustic emission technique[J].Tribology International,2013,65:161-170. |
[49] | 朱娟,张乔斌,陈宇,张昭,张鉴清,曹楚南.冲刷腐蚀的研究现状[J].中国腐蚀与防护学报,2014(03):199-210. |
[50] | 赵状,吴玉国,田壘,吴栋.管道两相流冲刷腐蚀的CFD研究进展[J].当代化工,2014(02):226-228. |
[51] | Okhovat A;Zeinali Hefrs S;Haj Asgarkhani M A et al.Modeling and Simulation of Erosion-Corrosion in Disturbed Two-Phase Flow Through Fluid Transport Pipelines[J].ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING,2014,39(3):1497-1505. |
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