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郑忠等:钢铁智能制造背景下物质流和能量流协同方法 ·123· [4]The State Couneil of the People's Republic of China.China Manu- 2012,47(5):1 facturing2025[EB/0L].(2015-05-08)[2015-12-01]. (蔡九菊,孙文强.中国钢铁工业的系统节能和科学用能 http://www.gov.cn/zhengce/content/2015-05/19/content_ 钢铁,2012,47(5):1) 9784.htm [16]Sun Y G.Energy flow network information model and a variety of (中华人民共和国国务院.中国制造2025[EB/0L].(2015- energy medium dynamic regulation in the iron and steel enterpri- 05-08)[2015-12-01].http://www.gov.cn/zhengce/content/ ses /Proceedings of 2010 National Conference on Energy and 2015-05/19/content_9784.htm) Enrironmental Production Technology.Jiujiang,2010:58 [5]Yin R Y.Development of steelmaking and continuous casting (孙摩广,钢铁企业能量流网络信息模型及多种能源介质动 technology and prospect of this technology in 2010 in China. 态调控/2010年全国能源环保生产技术会议.九江,2010: Steelmaking,2008,24(6):1 58) (殷瑞钰.我国炼钢-连铸技术发展和2010年展望.炼钢, [17]Sun Y G.Technologies based on the synergy between material 2008,24(6):1) flow and energy flow for managing and controlling energy system [6]Yin R Y.The multi-dimensional mass-flow control system of steel in iron and steel enterprises//Proceedings of the 10th CSM Steel plant process.Acta Metall Sin,1997,33(1):29 Congress the 6th Baosteel Biennial Academic Conference (殷瑞钰.钢铁制造过程的多维物流控制系统.金属学报, Shanghai,2015 1997,33(1):29) (孙彦广,基于物质流能量流协同的钢铁企业能源系统管控 [7]Yin R Y.Metallurgical Process Engineering.2nd Ed.Beijing: 技术/第十届中国钢铁年会暨第六届宝钢学术年会论文 Metallurgical Industry Press,2009 集.上海,2015) (殷瑞钰.治金流程工程学.2版.北京:治金工业出版社, [18]Ding Y,Chen G,Li L,et al.Discussion on construction of 2009) model and system on energy flow in the steel plant.fron Steel, [8] Yin R Y.Theory and Method of Metallurgical Process Integration. 2012,47(10):87 Beijing:Metallurgical Industry Press,2013 (丁毅,陈光,李莉,等.钢铁企业能源流管理模型与系统 (殷瑞钰.治金流程集成理论与方法.北京:治金工业出版 架构探讨.钢铁,2012,47(10):87) 社,2013) [19]Chen C,Li L Y,Ding Y,et al.Influencing factors of energy [9]Lu Z W,Cai J J,Yu Q B,et al.The influence of materials flows consumption for iron and steel enterprise systems.Iron Steel, in steel manufacturing process on its energy intensity.Acta Metall 2014,49(4):86 Sin,2000.36(4):370 (陈光,李玲云,丁毅,等.钢铁企业系统能耗影响因素分 (陆钟武,蔡九菊,于庆波,等.钢铁生产流程的物流对能耗 析.钢铁,2014.49(4):86) 的影响.金属学报.2000,36(4):370) [20]Tang L X,Luh P B,Liu JY,et al.Steel-making process sched- [10]Dai T J,Lu Z W.Analysis of the relationship between iron re- uling using Lagrangian relaxation.Int J Prod Res,2002.40 source efficiencies in steel production process and unit process. (1):55 Acta Metall Sin,2006,42(3):280 [21]Tang L X,Zhao Y,Liu J Y.An improved differential evolution (就铁军,陆钟武.钢铁生产流程铁资源效率与工序铁资源 algorithm for practical dynamic scheduling in steelmaking-contin- 效率关系的分析.金属学报,2006,42(3):280) uous easting production.IEEE Trans Erol Comput,2014,18 [11]Lu Z W.The Foundations of Industrial Ecology.Beijing:Sci- (2):209 ence Press,2010 [22]Wang G,Bai H,Cang D Q,et al.Mathematical model for diag- (陆钟武.工业生态学基础.北京:科学出版社,2010) nosis of energy consumption bottlenecks in steel plants and its ap- [12]Cai JJ.Wang JJ.Lu Z W,et al.Material flow and energy flow plication.J Univ Sci Technol Beijing,2009,31(9):1195 in iron steel industry and correlation between them.J (王刚,白皓,苍大强,等.钢铁企业能耗瓶颈诊断数学模型 Northeast Unig Nat Sci,2006,27(9):979 及应用.北京科技大学学报,2009,31(9):1195) (蔡九菊,王建军,陆钟武,等.钢铁企业物质流与能量流及 [23]He D F,Liang C.Energy utilization evaluation oriented to energy 其相互关系.东北大学学报(自然科学版),2006,27(9): flow network in the iron and steel enterprises//Proceedings of 979) the 8th National Conference on Energy and Thermal Engineering. [13]Du T,Cai JJ.Study on material,energy,pollutant flows for Dalian,2015:787 iron and steel enterprise.Iron Steel,2006,41(4):82 (贺东风,梁超.面向能量流网络的钢铁企业能量利用评价 (杜涛,蔡九菊.钢铁企业物质流,能量流和污染物流研究 /第八届全国能源与热工学术年会论文集.大连,2015: 钢铁,2006,41(4):82) 787) [14]Cai JJ,Wang J J,Zhang Q,et al.Material flows and energy [24]Wang P,Jiang Z Y,Zhang XX,et al.Long-term scenario fore- flows in iron steel factory and their influence on CO,emis- cast of production routes,energy consumption and emissions for sions.Res Enriron Sci,2008,21(1):196 Chinese steel industry.J Univ Sci Technol Beijing,2014,36 (蔡九菊,王建军,张琦,等.钢铁企业物质流、能量流及其 (12):1683 对C02排放的影响.环境科学研究,2008,21(1):196) (汪鹏,姜泽毅,张欣欣,等.中国钢铁工业流程结构、能耗 [15]CaiJJ,Sun WQ.Systems energy conservation and scientific en- 和排放长期情景预测.北京科技大学学报,2014,36(12): ergy utilization of iron and steel industry in China.Iron Steel, 1683)郑 忠等: 钢铁智能制造背景下物质流和能量流协同方法 [4] The State Council of the People蒺s Republic of China. China Manu鄄 facturing 2025 [ EB / OL]. ( 2015鄄鄄 05鄄鄄 08 ) [ 2015鄄鄄 12鄄鄄 01 ]. http: / / www. gov. cn / zhengce / content / 2015鄄鄄 05 / 19 / content _ 9784. htm (中华人民共和国国务院. 中国制造 2025 [EB/ OL]. (2015鄄鄄 05鄄鄄08) [2015鄄鄄12鄄鄄01]. http: / / www. gov. cn / zhengce / content / 2015鄄鄄05 / 19 / content_9784. htm) [5] Yin R Y. Development of steelmaking and continuous casting technology and prospect of this technology in 2010 in China. Steelmaking, 2008, 24(6): 1 (殷瑞钰. 我国炼钢鄄鄄 连铸技术发展和 2010 年展望. 炼钢, 2008, 24(6): 1) [6] Yin R Y. The multi鄄dimensional mass鄄flow control system of steel plant process. Acta Metall Sin, 1997, 33(1): 29 (殷瑞钰. 钢铁制造过程的多维物流控制系统. 金属学报, 1997, 33(1): 29) [7] Yin R Y. Metallurgical Process Engineering. 2nd Ed. Beijing: Metallurgical Industry Press, 2009 (殷瑞钰. 冶金流程工程学. 2 版. 北京: 冶金工业出版社, 2009) [8] Yin R Y. Theory and Method of Metallurgical Process Integration. Beijing: Metallurgical Industry Press, 2013 (殷瑞钰. 冶金流程集成理论与方法. 北京: 冶金工业出版 社, 2013) [9] Lu Z W, Cai J J, Yu Q B, et al. The influence of materials flows in steel manufacturing process on its energy intensity. Acta Metall Sin, 2000, 36(4): 370 (陆钟武, 蔡九菊, 于庆波, 等. 钢铁生产流程的物流对能耗 的影响. 金属学报, 2000, 36(4): 370) [10] Dai T J, Lu Z W. Analysis of the relationship between iron re鄄 source efficiencies in steel production process and unit process. Acta Metall Sin, 2006, 42(3): 280 (戴铁军, 陆钟武. 钢铁生产流程铁资源效率与工序铁资源 效率关系的分析. 金属学报, 2006, 42(3): 280) [11] Lu Z W. The Foundations of Industrial Ecology. Beijing: Sci鄄 ence Press, 2010 (陆钟武. 工业生态学基础. 北京: 科学出版社, 2010) [12] Cai J J, Wang J J, Lu Z W, et al. Material flow and energy flow in iron & steel industry and correlation between them. J Northeast Univ Nat Sci, 2006, 27(9): 979 (蔡九菊, 王建军, 陆钟武, 等. 钢铁企业物质流与能量流及 其相互关系. 东北大学学报(自然科学版), 2006, 27 (9): 979) [13] Du T, Cai J J. Study on material, energy, pollutant flows for iron and steel enterprise. Iron Steel, 2006, 41(4): 82 (杜涛, 蔡九菊. 钢铁企业物质流、能量流和污染物流研究. 钢铁, 2006, 41(4): 82) [14] Cai J J, Wang J J, Zhang Q, et al. Material flows and energy flows in iron & steel factory and their influence on CO2 emis鄄 sions. Res Environ Sci, 2008, 21(1): 196 (蔡九菊, 王建军, 张琦, 等. 钢铁企业物质流、能量流及其 对 CO2 排放的影响. 环境科学研究, 2008, 21(1): 196) [15] Cai J J, Sun W Q. Systems energy conservation and scientific en鄄 ergy utilization of iron and steel industry in China. Iron Steel, 2012, 47(5): 1 (蔡九菊, 孙文强. 中国钢铁工业的系统节能和科学用能. 钢铁, 2012, 47(5): 1) [16] Sun Y G. Energy flow network information model and a variety of energy medium dynamic regulation in the iron and steel enterpri鄄 ses / / Proceedings of 2010 National Conference on Energy and Environmental Production Technology. Jiujiang, 2010: 58 (孙彦广. 钢铁企业能量流网络信息模型及多种能源介质动 态调控 / / 2010 年全国能源环保生产技术会议. 九江, 2010: 58) [17] Sun Y G. Technologies based on the synergy between material flow and energy flow for managing and controlling energy system in iron and steel enterprises / / Proceedings of the 10th CSM Steel Congress & the 6th Baosteel Biennial Academic Conference. Shanghai, 2015 (孙彦广. 基于物质流能量流协同的钢铁企业能源系统管控 技术 / / 第十届中国钢铁年会暨第六届宝钢学术年会论文 集. 上海, 2015) [18] Ding Y, Chen G, Li L, et al. Discussion on construction of model and system on energy flow in the steel plant. Iron Steel, 2012, 47(10): 87 (丁毅, 陈光, 李莉, 等. 钢铁企业能源流管理模型与系统 架构探讨. 钢铁, 2012, 47(10): 87) [19] Chen G, Li L Y, Ding Y, et al. Influencing factors of energy consumption for iron and steel enterprise systems. Iron Steel, 2014, 49(4): 86 (陈光, 李玲云, 丁毅, 等. 钢铁企业系统能耗影响因素分 析. 钢铁, 2014, 49(4): 86) [20] Tang L X, Luh P B, Liu J Y, et al. Steel鄄making process sched鄄 uling using Lagrangian relaxation. Int J Prod Res, 2002, 40 (1): 55 [21] Tang L X, Zhao Y, Liu J Y. An improved differential evolution algorithm for practical dynamic scheduling in steelmaking鄄contin鄄 uous casting production. IEEE Trans Evol Comput, 2014, 18 (2): 209 [22] Wang G, Bai H, Cang D Q, et al. Mathematical model for diag鄄 nosis of energy consumption bottlenecks in steel plants and its ap鄄 plication. J Univ Sci Technol Beijing, 2009, 31(9): 1195 (王刚, 白皓, 苍大强, 等. 钢铁企业能耗瓶颈诊断数学模型 及应用. 北京科技大学学报, 2009, 31(9): 1195) [23] He D F, Liang C. Energy utilization evaluation oriented to energy flow network in the iron and steel enterprises / / Proceedings of the 8th National Conference on Energy and Thermal Engineering. Dalian, 2015: 787 (贺东风, 梁超. 面向能量流网络的钢铁企业能量利用评价 / / 第八届全国能源与热工学术年会论文集. 大连, 2015: 787) [24] Wang P, Jiang Z Y, Zhang X X, et al. Long鄄term scenario fore鄄 cast of production routes, energy consumption and emissions for Chinese steel industry. J Univ Sci Technol Beijing, 2014, 36 (12): 1683 (汪鹏, 姜泽毅, 张欣欣, 等. 中国钢铁工业流程结构、能耗 和排放长期情景预测. 北京科技大学学报, 2014, 36(12): 1683) ·123·
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