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应用先进的工艺模型优化COREX工艺 被引量:5

OPTIMIZATION OF THE COREX PROCESS THROUGHTHE APPLICATION OF ADVANCED PROCESS MODELS
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摘要 COREX工艺优化方案由一系列动力学工艺模型组成,具有灵活的工艺优化功能,能使操作状况完全透明化。工艺模型的系统结构采用最新的软件技术进行设计。 VAIs solution for the optimization of the COREX Process,comprising a highly effective series of dynamic process models,is introduced.In addition to providing flexible and optimized process functions,this solution enables a fully transparent mode of operation.The system architecture is based on the latest software technology and model results are graphically presented using 3D methods.
出处 《钢铁》 CAS CSCD 北大核心 1999年第7期15-18,共4页 Iron and Steel
关键词 COREX工艺 工艺模型 工艺优化 COREX Process,model,optimization,application
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  • 1周渝生.煤基熔融还原炼铁新工艺开发现状评述[J].钢铁,2005,40(11):1-8. 被引量:35
  • 2许海川,齐渊洪.COREX炼铁煤气生产热压块流程的模拟分析[J].钢铁,2007,42(4):16-20. 被引量:8
  • 3梁英教.物理化学[M].北京:冶金工业出版社,2005.
  • 4ASSIS P S, GUO L, FANG J, et al. Optimisation of COREX process [J]. Ironmaking and Steelmaking, 2008, 35(4): 303-307.
  • 5ZIEBIK A, LAMPERT K, SZEGA M. Energy analysis of a blast-furnace system operating with the COREX process and CO2 removal [J]. Energy, 2008, 33(2) : 199-205.
  • 6LEE S C, SHIN M K, JOO S H, et al. Development of computer model for simulating the transport phenomena in COREX melter-gasifier [J]. ISIJ International, 1999, 39(4): 319-328.
  • 7PAL S, LAHIRI A K. Mathematical model of COREX melter-gasifier: Part Ⅰ Steady-state model [ J ]. Metallurgical and Materials Transactions B: process Metallurgy and Materials Processing Science, 2003, 34 (1) : 103-114.
  • 8PAL S, LAHIRI A K. Mathematical model of COREX melter-gasifier: Part Ⅱ Dynamic model [ J ]. Metallurgical and Materials Transactions B: process Metallurgy and Materials Processing Science, 2003, 34 (1) : 115-119.
  • 9EICHBERGER E, FREYDORFER H, BRAUER F, et al. First operational results of the COREX plant at Jindal Vijayanagar steel [J]. MPT Metallurgical Plant and Technology International, 2000, 23(3): 56-58.
  • 10KUMAR P P, GUPTA D, NAHA T K, et al. Factors affecting fuel rate in COREX process [J]. Ironmaking and Steelmaking, 2006, 33(4): 293-298.

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