吹氩钢包内气泡聚并破碎和运动行为

基于Euler-Euler双流体模型及PBM模型,建立了吹氩钢包流场数学模型.此模型考虑了吹氩钢包内气液两相之间的曳力、升力、湍流扩散力和气泡的聚并和破碎等因素.研究了气泡聚并破碎对钢包钢液内含气率、气泡速度和混匀时间的影响,并与定气泡直径下的流场进行对比.数值结果表明:PBM模型的预测值更接近实验结果;钢包内气泡分布为中心区域气泡直径大,从中心到气液边界处气泡直径逐渐减小,气液两相区边界处直径最小;在钢包轴线上气泡速度先急剧增加然后缓慢减小,在接近液面处气泡速度又急剧减小....

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Published in东北大学学报(自然科学版) Vol. 39; no. 2; pp. 195 - 199
Main Author 勾大钊;王伟先;耿佃桥;雷洪
Format Journal Article
LanguageChinese
Published 东北大学 冶金学院,辽宁 沈阳 110819%东北大学 冶金学院,辽宁 沈阳 110819 2018
东北大学 材料电磁过程研究教育部重点实验室,辽宁 沈阳 110819
东北特钢集团 北满特殊钢有限责任公司,黑龙江 齐齐哈尔 161041
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Summary:基于Euler-Euler双流体模型及PBM模型,建立了吹氩钢包流场数学模型.此模型考虑了吹氩钢包内气液两相之间的曳力、升力、湍流扩散力和气泡的聚并和破碎等因素.研究了气泡聚并破碎对钢包钢液内含气率、气泡速度和混匀时间的影响,并与定气泡直径下的流场进行对比.数值结果表明:PBM模型的预测值更接近实验结果;钢包内气泡分布为中心区域气泡直径大,从中心到气液边界处气泡直径逐渐减小,气液两相区边界处直径最小;在钢包轴线上气泡速度先急剧增加然后缓慢减小,在接近液面处气泡速度又急剧减小.
Bibliography:GOU Da-zhao1, 2,WANG Wei-xian2,3 , GENG Dian-qiao1,2, LEI Hong1,2(1. Key Laboratory of Electromagnetic Processing of Materials,Ministry of Education,Northeastern University, Shenyang 110819,China; 2. School of Metallurgy,Northeastern University,Shenyang 110819,China;3. Beiman Special Steel Company Limited,Dongbei Special Steel Group,Qiqihar 161041,China. )
A mathematical model for the gas-liquid flow field in the ladle with argon blowing was built based on the Euler-Euler model and population balance model( PBM),which considered the effects of the drag force,lift force,turbulent dispersion force and bubble coalescence and breakage in ladle with argon blowing. The effects of bubble coalescence and breakage on the gas holdup,bubble velocity and mixing time were investigated and further compared with those from the constant diameter model. The numerical results show that the predicted data of the PBM agrees well with the experimental one. The bubble diameter is the largest one in center area and reduces gradually
ISSN:1005-3026
DOI:10.12068/j.issn.1005-3026.2018.02.010