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磁性纤维直径对捕集Fe基细颗粒影响数值模拟
引用本文:贾中坚,刁永发,张俪安,楚明浩,沈恒根.磁性纤维直径对捕集Fe基细颗粒影响数值模拟[J].过程工程学报,2021,21(8):926-934.
作者姓名:贾中坚  刁永发  张俪安  楚明浩  沈恒根
作者单位:东华大学环境科学与工程学院,上海201620
基金项目:国家重点研发计划资助项目;中央高校基本科研业务费重点资助项目
摘    要:为了实现对钢铁行业微细颗粒的超低排放,提出磁性纤维提高对Fe基细颗粒物的捕集.基于计算流体力学-离散相模型CFD-DPM对比研究了传统纤维、磁性纤维直径对Fe基细颗粒捕集效率以及过滤阻力的影响.结果表明:当风速为0.10 m/s时,对于直径为35~45μm范围的纤维,直径的增大能够明显增加过滤阻力.对于粒径小于2.5 ...

关 键 词:纤维直径  Fe基细颗粒  磁性纤维  质量因子  PM2.5
收稿时间:2020-07-24

Numerical simulation of the effect of magnetic fiber diameter on trapping Fe-based fine particles
Zhongjian JIA Yongfa DIAO Li′an ZHANG Minghao CHU Henggen SHEN.Numerical simulation of the effect of magnetic fiber diameter on trapping Fe-based fine particles[J].Chinese Journal of Process Engineering,2021,21(8):926-934.
Authors:Zhongjian JIA Yongfa DIAO Li′an ZHANG Minghao CHU Henggen SHEN
Affiliation:College of Environmental Science and Engineering, Donghua University, Shanghai 201620, China
Abstract:In order to achieve ultra-low emissions of fine particles in the steel industry, magnetic fibers are proposed to improve the trapping efficiency of Fe-based fine particles. Based on CFD-DPM (Discrete Phase Model), the effect of traditional fiber and magnetic fiber diameter on the trapping efficiency of Fe-based fine particles and the filtration resistance of the fiber was studied. The results showed that there was no obvious difference in filtration resistance between magnetic fiber and traditional fiber. When the wind speed was 0.10 m/s, for fibers with a diameter in the range of 35~45 μm, the increase in diameter can significantly increase the filtration resistance. Traditional fibers had a low trapping efficiency for particles with a particle size of less than 2.5 μm. As the particle size increase, the trapping efficiency gradually increased. When the wind speed was in the range of 0.01~0.10 m/s, as the wind speed increased, the traditional fiber trapping efficiency decreased first and then increased. For the trapping efficiency of particles with a particle size of 4.5 μm, the traditional fiber diameter had an optimal range of 15~25 μm. For particles with a particle size of less than 2.5 μm, the increase in the diameter of the magnetic fiber had a relatively small effect on the improvement of the trapping efficiency. When the particle size was greater than 2.5 μm, increasing the fiber diameter can significantly improve the trapping efficiency. When the wind speed was in the range of 0.01~0.05 m/s, increasing the fiber diameter had a significant effect on improving the magnetic fiber trapping efficiency; when the wind speed was 0.08~0.10 m/s, the effect of the change in fiber diameter on the trapping efficiency was smaller. The quality factor of magnetic fiber decreased with the increase of fiber diameter. When the fiber diameter was in the range of 10~35 μm, the decreasing rate of the quality factor of increasing fiber diameter was small, and when the fiber diameter was in the range of 35~45 μm, the decreasing rate of quality factor was larger.
Keywords:fiber diameter  Fe-based particles  magnetic fiber  quality factor  PM2  5  
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