Modeling and Energy Efficiency Analysis of the Steelmaking Process in an Electric Arc Furnace

被引:0
|
作者
Jesús D. Hernández
Luca Onofri
Sebastian Engell
机构
[1] TU Dortmund University,Process Dynamics and Operations Group, Department of Biochemical and Chemical Engineering
[2] Acciai Speciali Terni S.p.A.,Automation Department
关键词
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents a comprehensive model of an industrial electric arc furnace (EAF) that is based upon several rigorous first-principles submodels of the heat exchange in the EAF and practical experience from an industrial melt shop. The model is suited for process simulation, optimization, and control applications. It assumes that the energy demand of the process is satisfied by six sources, the electric arc, the oxy-fuel burners, the oxygen lances, the combustion of coal, and the oxidation of metal in the liquid and in the solid phase. The energy exchange between the liquid and the solid phase due to liquid metal splashing is also considered. The different mechanisms of heat exchange are represented in the model as follows: (a) the radiative heat exchange from the arc to the other phases is computed using the DC circuit analogy, where the view factors are calculated using exact formulae and Monte-Carlo algorithms. (b) The energy input from the oxy-fuel burner is modeled using simplified geometries for which heat transfer relationships are known. (c) The amount of heat released by the oxidation of solid metal is described by the quadratic corrosion formula. (d) The energy exchange from the bath to the solid phase due to splashing is modeled using relationships and experimental data that are available in the literature. The model contains the melting rates and the efficiency of the oxygen lancing as free parameters; their values were computed by a least squares fit to process data of an industrial Ultra-High-Power EAF. In comparison with existing EAF models, the model presented here describes the dynamic behavior of the melting process more realistically. Based on the model, time-dependent energy efficiency curves for the various contributions and for the overall process are computed and discussed.
引用
收藏
页码:3413 / 3441
页数:28
相关论文
共 50 条
  • [41] Power Increase of Steelmaking Electric-Arc Furnace
    Kornilov, G. P.
    Nikolaev, A. A.
    Anokhin, V. V.
    METALLURGIST, 2016, 60 (7-8) : 780 - 785
  • [42] Study and Analysis of Dynamics and Energy Efficiency of Arc Steelmaking Furnace Electrical Mode with a Fuzzy Control Algorithm
    Paranchuk, Yaroslav
    Jancarczyk, Daniel
    Falat, Pawel
    ENERGIES, 2023, 16 (08)
  • [43] Assessment of stack emissions during different phases of electric arc furnace steelmaking process
    Hameed, Zeeshan A.
    Rahman, Azizur
    KUWAIT JOURNAL OF SCIENCE, 2020, 47 (01) : 72 - 78
  • [44] Energy optimisation in electric arc steelmaking
    Gill, Laurie
    Steel Times, 1988, 216
  • [45] Computer aided mass balance analysis for AC electric arc furnace steelmaking
    Çamdali, Ü
    Tunç, M
    JOURNAL OF IRON AND STEEL RESEARCH INTERNATIONAL, 2005, 12 (03) : 11 - 13
  • [46] Modeling of the Electric Arc Behavior of the Electric Arc Furnace
    Panoiu, Manuela
    Panoiu, Caius
    Ghiormez, Loredana
    SOFT COMPUTING APPLICATIONS, 2013, 195 : 261 - 271
  • [47] Computer Aided Mass Balance Analysis for AC Electric Arc Furnace Steelmaking
    anal amdali
    Murat Tun
    JournalofIronandSteelResearch(International), 2005, (03) : 11 - 13
  • [48] Energy Efficiency of an Electric Arc Furnace with SVM-RFE
    Amado, Sanchez
    Crispin, Hernandez
    Haydee P, Martinez
    Rafael, Ordonez
    Malaquias, Quintero P.
    25TH INTERNATIONAL CONFERENCE ON ELECTRONICS, COMMUNICATIONS AND COMPUTERS (CONIELECOMP 2015), 2015, : 161 - 167
  • [49] Calculation of View Factors in Electric Arc Furnace Process Modeling
    Hay, Thomas
    Hernandez, Jesus
    Roberts, Suzanne
    Echterhof, Thomas
    STEEL RESEARCH INTERNATIONAL, 2021, 92 (02)
  • [50] IMPROVEMENT IN EFFICIENCY OF GAS REMOVAL ON 100T ELECTRIC-ARC STEELMAKING FURNACE
    TULUEVSKII, YN
    MAKSUTOV, RF
    YAVICH, VM
    KISELEV, AD
    ZINUROV, IY
    SOKOLEVSKIKH, SF
    STEEL IN THE USSR, 1986, 16 (11): : 568 - 570