期刊文献+

大型高炉布料模型的研究与应用 被引量:4

Research and Application of Burden Charging Model for Large Blast Furnace
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摘要 以无料钟布料过程中物料运动机理为基础,改进了料流轨迹的修正方法,提出了料面形状计算的新方法.高炉布料模型在计算过程中考虑了炉料特性、焦炭塌落等对料面形状的影响,使计算结果更符合实际布料.结合生产实践需求,计算出了各种不同布料制度下炉料的料面形状、炉料径向分布、径向矿焦比等参数,提出了高炉区域焦炭负荷指数,更加直观、形象地对比各种布料制度.利用该模型可解答大型高炉生产上存在的问题,对高炉的实际生产提出了实用性建议,为高炉操作人员调整布料制度提供了理论指导. A new method of calculating charging profile was proposed which based on the mechanism of material movement in the charging process and improved the correction method of material flow path. As the model takes into account the effects of charge characteristics, coke collapsing and other factors on the charging profile, it makes the simulation results more accurate in practice. When its setup combines with industrial conditions, the model can calculate the parameters of charging profile, radial distribution of material, radial O/C rate and etc. under different charging systems. The area coke load index of blast furnace (BF) has been defined which makes it more evident when comparing the difference of various charging system. Using the model, some existing problems in large BF could be solved and also the practical suggestion can be proposed for the actual production. The model could further provide theoretical guidance of adjusting charging system for BF operators.
出处 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2016年第5期658-662,共5页 Journal of Northeastern University(Natural Science)
基金 中央高校基本科研业务费专项资金资助项目(N110602004) 教育部新世纪优秀人才计划项目(NCET-08-0099)
关键词 大型高炉 布料模型 料流轨迹 料面形状 布料制度 large blast furnace burden charging model material flow path charging profile charging system
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参考文献10

  • 1Shigeru U, Shungo N, Hiroshi N, et al. Recent progress and future perspective on mathematical modeling of blast furnace [ J ]. ISIJ International, 2010,50 ( 7 ) : 914 - 923.
  • 2Yoshimasa K, Takanobu I, Tsutomu T. Two dimensional analysis on the formation process of burden distribution at blast furnace top [ J ]. ISIJ International, 1988,28 ( 11 ) : 916 -925.
  • 3Zhao-jie Teng,Shu-sen Cheng,Peng-yu Du,Xi-bin Guo.Mathematical model of burden distribution for the bell-less top of a blast furnace[J].International Journal of Minerals,Metallurgy and Materials,2013,20(7):620-626. 被引量:4
  • 4储满生,王宏涛,柳政根,唐珏.高炉炼铁过程数学模拟的研究进展[J].钢铁,2014,49(11):1-8. 被引量:25
  • 5李海峰,罗志国,张树才,邹宗树.溜槽角度对混装布料过程的影响[J].东北大学学报(自然科学版),2012,33(5):681-684. 被引量:12
  • 6Mats N, Henrik S. Prediction of a blast fumace burden distribution variable [ J ]. ISIJ International, 1996,36 ( 9 ) : 1142 - 1150.
  • 7Liu Yun-cai. Burden distribution in blast furnace [ M ]. 4th ed. Beijing : Metallurgy Industry Press, 2012.
  • 8Radhakrishnan V R, Mamthy R K. Mathematical model for predictive control of the bell-less top charging system of a blast furnace [ J ]. Journal of Process Control, 2001,11 ( 5 ) : 565 - 586.
  • 9Bolshakov V I, Semenov Y S, Ivancha N G, et al. Study of the flow of burden materials and their distribution on the furnace top of a modem blast furnace [ J]. Metallurgical and Mining Industry ,2012,4 ( 3 ) : 158 - 165.
  • 10Park J,Baek U, Jang K, et al. Development of the burden distribution and gas flow model in the blast furnace shaft [ J ]. ISIJ International, 2011,51 (10) : 1617 - 1623.

二级参考文献47

  • 1黄波,汪卫.基于高炉专家系统的多变量炉温智能控制系统[J].钢铁,2005,40(4):21-23. 被引量:9
  • 2储满生,郭宪臻,沈峰满,八木顺一郎.基于多流体理论的高炉数学模型及其求解[J].东北大学学报(自然科学版),2007,28(3):361-364. 被引量:11
  • 3储满生,郭宪臻,沈峰满,八木顺一郎.高炉数学模型的进展[J].中国冶金,2007,17(4):10-14. 被引量:12
  • 4Wrighta B, Zulli P, Zhou Z Y, et al. Gas-solid flow in an ironmaking blast furnace-- I : physical modeling [ J ]. Powder Technology, 2011,208 ( 1 ) : 86 - 97.
  • 5Yashimasa K, Takao J, Toshihiko S. Investigations of bell- less charging based on full scale model experiments [ J ]. Transactions ISIJ, 1984,24:799 807.
  • 6Yashimasa K, Takao J, Toshihiko S. Development of a simulation model for burden distribution at blast furnace top [J ]. Iransactions ISIJ, 1983,23 :1045 - 1052.
  • 7Akashi M, Mio H, Shimosaka A, et al. Estimation of bulk density distribution in particle charging process using discrete element method considering particle shape [ J ]. ISIJ International, 2008,48 ( 11 ) : 1500 - 1506.
  • 8Mio H, Komatsuki S, Akashi M, et al. Analysis of traveling behavior of nut coke particles in bell-type charging process of blast furnace by using discrete element method [ J ]. ISIJ International, 2010,50(7) :1000-1009.
  • 9Zhou Z Y, Zhu H P, Wright B, et al. Gas-solid flow in an ironmaking blast furnace-II: discrete particle simulation [J]. Powder Technology, 2011,208(1) :72 - 85.
  • 10Cundall P A, Strack O D L. A discrete numerical model for granular assemblies [ J ]. Geotechnique, 1979,29 ( 1 ) : 47 - 65.

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