首页|密度和表面张力对底吹气体搅拌钢包中混合时间影响的3D数值研究

密度和表面张力对底吹气体搅拌钢包中混合时间影响的3D数值研究

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在熔融相冶金过程中,注入气体进行混合对于获得均质产物至关重要.混合效率取决于气体流速、渣层高度以及熔融相物理性质等工艺参数.本文通过数值模拟研究底吹浴槽中流体行为的上述参数.用水和油分别模拟熔融金属和熔渣,根据实验数据对数值模拟结果、特别是混合时间进行验证.结果表明,混合时间随渣层高度增大而增加,随炉渣材料密度增加而减小.混合时间随主相密度的增加而减小,随着空气和水间表面张力的增大而增加.还模拟一种性质接近真实熔融金属的情形.系统的行为主要受动量的影响,而不是受耗散力的影响.因此,与空气和熔融相间表面张力的影响相比,熔融相密度对混合过程的影响更为显著.
3D numerical investigation of effects of density and surface tension on mixing time in bottom-blown gas-stirred ladles
In molten phase metallurgical processes, mixing via gas injection has a vital role in obtaining a homogeneous product. The efficiency of mixing depends on operational variables such as gas flow rate and slag height as well as physical properties of the molten phases. A numerical simulation is conducted to study the above parameters in the flow behavior of a bottom-blown bath. The molten metal and the slag are modeled by water and oil, respectively. The numerical results, particularly the mixing time, are validated against experimental data. The results show that mixing time increases as the slag height increases and decreases as the density of the slag material increases. The mixing time decreases with an increase in the density of the primary phase; however, it increases as the surface tension between air and water increases. A case with properties close to a real molten metal is also modeled. The performance of the system is influenced by the momentum rather than the dissipative forces. Thus, the effect of the density of the molten phase on the mixing process is more pronounced compared to the effect of the surface tension between the air and the molten phase.

gas-stirred ladlemixing timedensitysurface tensiontracer concentrationnumerical simulation

Matin GHADIMI REZAEI、Pooyan HASHEMI TARI、Mohammad EMAMZADEH、Leili TAFAGHODI KHAJAVI

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Mechanical Engineering Department,Shahid Beheshti University,Tehran,16589-53571,Iran

Material Science and Engineering Department,McMaster University,Hamilton L8S 4L7,Canada

气体搅拌钢包 混合时间 密度 表面张力 示踪剂浓度 数值模拟

2021

中国有色金属学报(英文版)
中国有色金属学会

中国有色金属学报(英文版)

CSTPCDCSCDSCI
影响因子:1.183
ISSN:1003-6326
年,卷(期):2021.31(10)
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