期刊文献+

环境温度对转炉顶吹氧枪射流特性的影响 被引量:3

Effect of Ambient Temperature on Characteristics of Jets from Oxygen Lance in BOF Steelmaking
下载PDF
导出
摘要 联合标准的k-ω湍流模型和雷诺平均的N-S方程,建立了转炉多喷孔氧枪超音速射流可压缩、非等温过程的三维CFD模型,模型的有效性通过实验进行了验证.考察了温度对气体分子黏度的影响,研究了不同温度场下射流动力学特性.结果表明:环境温度对射流速度、密度及温度分布有较大影响,环境温度越高,射流密度越小,速度衰减越慢,速度越大,并且射流径向扩张越厉害;温度越低,射流越易于聚并.随着射流的轴向流动,温度场对射流动压的影响逐渐减小,即射流对熔池的冲击力受环境温度影响减弱,但冲击面积随温度的提高而增大. Combining the standard k -ω model with the Reynolds averaged Navier-Stokes (RANS) equations, a compressible, non-isothermal and three-dimensional CFD model was developed for the multiple nozzle supersonic jets in top-blown steelmaking convertor, and the validity of the model was verified by experiment. The effect of temperature field on molecule viscosity of fluid was considered, and the dynamic properties of jets were studied in different temperature fields. The results showed that ambient temperature makes a great influence on jets velocity, temperature and density distributions. With the increase of ambient temperature, the jets density decreases, their velocity attenuation is slower, velocity is higher and radial expanding of jets is much easier. Jet is more likely to coalescence in lower ambient temperature. As jets travel in axial direction, the effect of ambient temperature on jets dynamic pressure tends to negligible. That is to say, the effect of the ambient temperature on the impacting force of jets on the bath is weakened, but impinging area increases with the increase of ambient temperature.
出处 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2014年第10期1437-1441,共5页 Journal of Northeastern University(Natural Science)
基金 国家自然科学基金资助项目(51104037) 中央高校基本科研业务费专项资金资助项目(N120402010)
关键词 射流 射流聚并 环境温度 转炉吹炼 CFD jets jets coalescence ambient temperature BOF CFD
  • 相关文献

参考文献9

  • 1Natio K I,Ogawa Y,Inomoto T,et al.Characteristics of jets from topblown lance in converter[J].ISIJ International,2000,40(1):23-30.
  • 2Kumagai T,Iguchi M.Effect of lance design on jet behavior and spitting rate in top blown process[J].ISIJ International,2001,41(12):1454-1459.
  • 3Tago Y,Higuchi Y.Effect of nozzle twisted lance on jet behavior and spitting rate in top blown process[J].ISIJ International,2003,43(9):1410-1414.
  • 4Meidani A R N,Isac M,Richardson A,et al.Modelling shrouded supersonic jets in metallurgical reactor vessels[J].ISIJ International,2004,44(10):1639-1645.
  • 5Peng Y,Han T.Gasparticle flow in a de laval nozzle with curved convergent configuration[J].ISIJ International,1996,36(3):263-268.
  • 6Odenthal H J,Falkenreck U,Schlüter J.CFD simulation of multiphase melt flows in steelmaking convertor[C]//European Conference on Computational Fluid Dynamics.Delft,2006:71-89.
  • 7李强,李明明,李琳,邹宗树.炼钢转炉顶吹氧气射流特性的CFD数值分析[J].东北大学学报(自然科学版),2013,34(6):828-831. 被引量:14
  • 8Wang W J,Yuan Z F,Matsuuar H,et al.Threedimensional compressible flow simulation of topblown multiple jets in converter[J].ISIJ International,2010,50(4):491-500.
  • 9喷枪联合实验小组.50t顶吹转炉喷抢的冷态实测实[J].钢铁,1977(4):25-44.

二级参考文献9

  • 1Higuchi Y,Tago Y. Effect of lance design on jet behavior andspitting rate in top blown process [ J ]. ISIJ International,2001,41(12) :1454 -1459.
  • 2Naito K,Ogawa Y, Inomoto T, et al. Characteristics of jetsfrom top-blown lance in converter [ J ]. ISIJ International,2000,40(l):23 -30.
  • 3Tago Y,Higuchi Y. Fluid flow analysis of jets from nozzles intop blown process[ J]. ISIJ International,2003 ,43(2) :209 -215.
  • 4Hatta N,Fujimoto H, Ishii R, et al. Numerical study onsupersonic flows of gas-liquid particle mixture in a de Lavalnozzle [J]. ISIJ International,1989,29 ( U ): 911 - 918.
  • 5Peng Y,Han T. Gas-particle flow in a de Laval nozzle withcurved convergent configuration[J]. ISIJ International, 1996,36(3) :263 -268.
  • 6Odenthal H J, Kempken J,Schluter J,et al. Advantageousnumerical simulation of the converter blowing process [ J ].Iron Steel Technology f2001,4(11) :71 -89.
  • 7Wang W Jt Yuan Z F, Matsuura H. Three-dimensionalcompressible flow simulation of top-blown multiple jets inconverter [ J ]. ISIJ International,2010,50 (4) :491 -450.
  • 8Odenthal H J, Falkenreck U, Schluter J. CFD simulation ofmultiphase melt flows in steelmaking convertor [ C ]//European Conference on Computational Fluid Dynamics.Delft:TU Delft,2006.
  • 9Sumii I,Kishimoto Y, Kikuchi Y, et al. Effect of high-temperature field on supersonic oxygen jet behavior [ J ]. ISIJInternational ,46( 9) :1312 - 1317.

共引文献13

同被引文献33

  • 1申景霞,董凯,刘文娟,朱荣.集束射流火焰燃烧特性热态实验[J].北京科技大学学报,2011,33(S1):93-97. 被引量:1
  • 2张春霞,蔡志鹏,许志宏.转炉氧枪超音速射流速度衰减和分布参数的研究[J].钢铁,1995,30(9):10-13. 被引量:9
  • 3Deo B, Boom R. Fundamentals of Steelmaking Metallurgy ]-M~. Upper Saddle River ~ Prentice-Hall, 1993.
  • 4Anderson J E,Mathur P C,Selines R J. Method for Introdu cingGasintoaLiquid: US5,814,125EP~. [1998 9-29].
  • 5Bushoom E,Cooper S, Daubler L. Improving EAF productivi ty with praxair coherent jet technologyEC~//Electric Furnace Conference. IS. 1.~: Iron and Steel Society of Aime, 1998=481.
  • 6Alam M, Naser J, Brooks G, et al. Computational fluid dy- namics modeling of supersonic coherent jets for electric arc furnace steelmaking processEJ~. Metallurgical and Materials Transactions:B, 2010,41 (6) : 1354.
  • 7Liu F,Zhu R,Dong K,et al. Effect of ambient and oxygen temperature on flow field characteristics of coherent jet~JT. Metallurgical and Materials Transactionsz B, 2016, 47 (1) :228.
  • 8AndersonJDJr.计算流体力学入门[M].姚朝晖,周强,译.北京:清华大学出版社,2010.
  • 9陈绍春,朱荣,杨竹芳,卢帝维.转炉集束射流氧枪的射流特性研究[J].福州大学学报(自然科学版),2010,38(5):711-716. 被引量:9
  • 10张春霞,蔡志鹏,许志宏,梁云.大型多孔氧枪喷头射流速度分布的数学模型[J].北京科技大学学报,1995,17(S1):94-99. 被引量:3

引证文献3

二级引证文献13

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部