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林文辉等:转炉吹炼后期碳含量预报的改进指数模型 861· 100转炉的应用.河北治金,2018(9):58) [21]Liu K,Liu L,He P,et al.A new algorithm of endpoint carbon [15]IRSID.Method and Arrangement for Measuring Continuously the content of BOF based on of off-gas analysis.Steelmaking,2009, Change of the Carbon Content of a Bath of Molten Metal:French 25(1):33 Patent,.1309212.1962-10-8 (刘锟,刘浏,何平,等.基于烟气分析转炉终点碳含量控制的新 IRSID.Procede et Dispositif Pour la Mesure Continue de la 算法.炼钢,2009,25(1):33) Teneur en Carbone d'un Bain Metallique en Cours D'affinage: [22]Tu H.Study on Comverter Dynamic Process Model Based on Flue Brevet d'invention francais,1309212.1962-10-8) Gas Detection[Dissertation].Shanghai:Shanghai University,2002 [16]Dumont-Fillon J,Vayssiere P,Trentini B.Continuous carbon (屠海.基于炉气检测的转炉动态过程模型研究学位论文].上 determination in the basic oxygen processes.JOM,1964,16(6): 海:上海大学,2002) 508 [23]Li N,Lin W H,Cao LL,et al.Carbon prediction model for basic [17]Meyer H W,Dukelow D A,Fischer MM.Static and dynamic oxygen furnace off-gas analysis based on bath mixing degree.Chin control of the basic oxygen process.M194,16(6):501 JEng,2018,40(10):1244 [18]Zhang G Y,Wan X F,Lin D,et al.Carbon content prediction at (李南,林文辉,曹玲玲,等.基于熔池混匀度的转炉烟气分析定 blowing end-point of converter with off-gas analysis.J Mater 碳模型.工程科学学报,2018,40(10):1244) Metall,2007,6(1):3 [24]Li G H,Wang B,Liu Q,et al.A process model for BOF process (张贵玉,万雪峰,林东,等.应用炉气分析预测转炉吹炼终点碳 based on bath mixing degree.Int J Miner Metall Mater,2010, 含量.材料与冶金学报,2007,6(1):3) 17(6):715 [19]Glasgow J A,Porter W F,Morrill J.Development and operation of [25]Rout B K,Brooks G,Akbar Rhamdhani M,et al.Dynamic model BOF dynamic control.JOM,1967,19(8):81 of basic oxygen steelmaking process based on multizone reaction [20]Uemura T,Yamamoto T,Kitagawa Y,et al.Process computer kinetics:modeling of decarburization.Metall Mater Trans B,2018, system at the No.3 BOF shop in Wakayama Steel Works. 49(3:1022 Sumitomo Metal,1973,25(1):71 [26]Shukla A K,Deo B,Millman S,et al.An insight into the (植村卓郎,山本哲也,北川美教,等.和歌山製铁所第三製钢工 mechanism and kinetics of reactions in BOF steelmaking:theory 場計算機制御.住友金属,1973,25(1):71) vs practice.Steel Res Int,2010,81(11):940100 t转炉的应用. 河北冶金, 2018(9):58) IRSID. Method and Arrangement for Measuring Continuously the Change of the Carbon Content of a Bath of Molten Metal: French Patent, 1309212. 1962-10-8 ( IRSID. Procédé et Dispositif Pour la Mesure Continue de la Teneur en Carbone d'un Bain Métallique en Cours D'affinage: Brevet d'invention français, 1309212. 1962-10-8) [15] Dumont-Fillon  J,  Vayssiere  P,  Trentini  B.  Continuous  carbon determination  in  the  basic  oxygen  processes. JOM,  1964,  16(6): 508 [16] Meyer  H  W,  Dukelow  D  A,  Fischer  M  M.  Static  and  dynamic control of the basic oxygen process. JOM, 1964, 16(6): 501 [17] Zhang G Y, Wan X F, Lin D, et al. Carbon content prediction at blowing  end-point  of  converter  with  off-gas  analysis. J Mater Metall, 2007, 6(1): 3 (张贵玉, 万雪峰, 林东, 等. 应用炉气分析预测转炉吹炼终点碳 含量. 材料与冶金学报, 2007, 6(1):3) [18] Glasgow J A, Porter W F, Morrill J. Development and operation of BOF dynamic control. JOM, 1967, 19(8): 81 [19] Uemura  T,  Yamamoto  T,  Kitagawa  Y,  et  al.  Process  computer system  at  the  No.  3  BOF  shop  in  Wakayama  Steel  Works. Sumitomo Metal, 1973, 25(1): 71 (植村卓郎, 山本哲也, 北川美教, 等. 和歌山製鉄所第三製鋼工 場計算機制御. 住友金属, 1973, 25(1):71) [20] Liu  K,  Liu  L,  He  P,  et  al.  A  new  algorithm  of  endpoint  carbon content  of  BOF  based  on  of  off-gas  analysis. Steelmaking,  2009, 25(1): 33 (刘锟, 刘浏, 何平, 等. 基于烟气分析转炉终点碳含量控制的新 算法. 炼钢, 2009, 25(1):33) [21] Tu H. Study on Converter Dynamic Process Model Based on Flue Gas Detection[Dissertation]. Shanghai: Shanghai University, 2002 (屠海. 基于炉气检测的转炉动态过程模型研究[学位论文]. 上 海: 上海大学, 2002) [22] Li N, Lin W H, Cao L L, et al. Carbon prediction model for basic oxygen furnace off-gas analysis based on bath mixing degree. Chin J Eng, 2018, 40(10): 1244 (李南, 林文辉, 曹玲玲, 等. 基于熔池混匀度的转炉烟气分析定 碳模型. 工程科学学报, 2018, 40(10):1244) [23] Li G H, Wang B, Liu Q, et al. A process model for BOF process based  on  bath  mixing  degree. Int J Miner Metall Mater,  2010, 17(6): 715 [24] Rout B K, Brooks G, Akbar Rhamdhani M, et al. Dynamic model of basic oxygen steelmaking process based on multizone reaction kinetics: modeling of decarburization. Metall Mater Trans B, 2018, 49(3): 1022 [25] Shukla  A  K,  Deo  B,  Millman  S,  et  al.  An  insight  into  the mechanism  and  kinetics  of  reactions  in  BOF  steelmaking:  theory vs practice. Steel Res Int, 2010, 81(11): 940 [26] 林文辉等: 转炉吹炼后期碳含量预报的改进指数模型 · 861 ·
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