Numerical Simulation of Gas-Liquid Two Phase Flow in a Double-Side-Blown Bath Smelter
Received:June 03, 2024   Revised:July 24, 2024   Accepted:July 29, 2024      Published Online:November 17, 2024
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DOI:doi:10.3969/j.issn.1007-7545.2025.01.002
KeyWord:air flow rate; bath smelting; numerical simulation; gas-liquid flow; double-side-blown
                    
AuthorInstitution
CHEN Zhaohui 赤峰云铜有色金属有限公司
ZHAO Shenghui 中南大学 能源科学与工程学院
ZHAO Mingjie 赤峰云铜有色金属有限公司
ZHAO Guohua 赤峰云铜有色金属有限公司
ZHANG Xiaoxue 赤峰云铜有色金属有限公司
CHEN Zhuo 中南大学 能源科学与工程学院
SONG Yanpo 中南大学 能源科学与工程学院
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Abstract:
      In order to explore the approach to increase production efficiency of copper Double-Side-Blown (DSB) smelting process, a numerical model of gas-liquid two phase flow was developed by using VOF and other methods based an actual DSB smelting furnace in YCC Chifeng Non-ferrous Metals Co., Ltd., and the smelting process under different air flow rate (1 300, 1 500 and 1 700 m3/h, in standard condition) was numerical simulated. The simulation results show that increasing the air supply flow can improve the smelting efficiency to a certain extent, but it may also lead to the increase of the incidence of dust, so the increase of the air supply flow should not be too large.
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