Effects of EAF Operations on Water-Cooling Panel Overheating

被引:2
|
作者
Luo, Qingxuan [1 ]
Chen, Yuchao [1 ]
Abraham, Sunday [2 ]
Wang, Yufeng [2 ]
Petty, Randy [2 ]
Silaen, Armin K. [1 ]
Zhou, Chenn [1 ]
机构
[1] Purdue Univ Northwest, Ctr Innovat Visualizat & Simulat CIVS, 2200 169th St, Hammond, IN 46323 USA
[2] SSAB Amer, SSAB Amer R&D, 1770 Bill Sharp Blvd, Muscatine, IA 52761 USA
关键词
computational fluid dynamics; electric arc furnace; freeboard combustion; slag foaming; water panel overheating; ELECTRIC-ARC FURNACE; HEAT-TRANSFER; DECARBURIZATION; VISCOSITIES; RADIATION;
D O I
10.1002/srin.202100844
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
An electric arc furnace (EAF) is a furnace that utilizes mainly electric energy to melt scraps into liquid. Above the liquid steel is called the freeboard, and combustion that happens here can significantly heat the furnace wall, resulting in overheating issues on water-cooling panels. In this study, a comprehensive computational fluid dynamics (CFD) model is developed to predict the side wall temperature distribution of an EAF. The comprehensive CFD model is integrated into a coherent jet, a DC electric arc, and a slag foaming models.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Analysis of operation of water-cooling powers with the atomizing nozzles
    Kolesnik, V.V.
    Orlik, V.N.
    Zelentsov, V.V.
    2001, TEZA : 12 - 17
  • [22] Dynamic performance test and optimization of water-cooling chiller
    Li, Zhi-sheng
    Li, Dong-mei
    Wang, Xiao-xia
    Zhang, Guo-qiang
    Liu, Jian-long
    PROCEEDINGS OF THE 3RD ASIAN CONFERENCE ON REFRIGERATION AND AIR-CONDITIONING VOLS I AND II, 2006, : 81 - +
  • [23] Development of Water-cooling Transmission Device for Magnetorheological Fluid
    Wang, Shuyou
    Chen, Fei
    Tian, Zuzhi
    Dou, Jin
    Wu, Xiangfan
    JOURNAL OF MAGNETICS, 2018, 23 (02) : 285 - 292
  • [24] PERFORMANCE OF NATURAL-DRAUGHT WATER-COOLING TOWERS
    CHILTON, H
    PROCEEDINGS OF THE INSTITUTION OF ELECTRICAL ENGINEERS-LONDON, 1952, 99 (71): : 440 - 456
  • [25] Thermoelectric water-cooling device applied to electronic equipment
    Huang, Hsiang-Sheng
    Weng, Ying-Che
    Chang, Yu-Wei
    Chen, Sih-Li
    Ke, Ming-Tsun
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2010, 37 (02) : 140 - 146
  • [26] Effects of cyclic heating and water-cooling on the mechanical properties of WC-Co coatings
    Cheng J.
    Peng J.
    Wang M.
    Bo K.
    Li K.
    Zhang G.
    Yang Z.
    Journal of Alloys and Compounds, 2020, 831
  • [27] Multifunctional robot to maintain boiler water-cooling tubes
    Gao, Xueshan
    Xu, Dianguo
    Wang, Yan
    Pan, Huanhuan
    Shen, Weimin
    ROBOTICA, 2009, 27 : 941 - 948
  • [28] Hot-water quarantine treatment and water-cooling of 'Haden' mangoes
    de Leon, LP
    Munoz, C
    Perez, L
    de Leon, FD
    Kerbel, C
    Flores, LP
    Esparza, S
    Bosquez, E
    Trinidad, M
    5TH INTERNATIONAL MANGO SYMPOSIUM, VOLS 1 AND 2, 1997, (455): : 786 - 796
  • [29] Characteristics of Water-Cooling Dielectric Barrier Discharge Spraying Nozzle
    Tial, Mai Kai Suan
    Mitsugi, Fumiaki
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2022, 50 (09) : 2972 - 2976
  • [30] Effects of Water-Cooling on the Mechanical Properties and Microstructure of 5083 Aluminum Alloy during Flame Straightening
    Cai, Congwei
    Wang, Xue
    Liang, Zhimin
    Rao, Yuzhong
    Wang, Hongbo
    Yan, Dejun
    METALS, 2018, 8 (09):