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CFD Study of Gas-Liquid Phase Interaction Inside a Submerged Lance Smelting Furnace for Copper Smelting

机译:用于铜熔炼的浸没式熔炼炉内气液相相互作用的CFD研究

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Bath smelting technology, such as the submerged lance smelting furnace, is used in the modern copper making industry. The first submerged lance smelting furnace developed by Dongying Fangyuan Nonferrous Metals Co., Ltd has shown potential for high productivity and energy savings. In this study, computational fluid dynamics (CFD) was applied to investigate the current design of the furnace. A three-dimensional multiphase CFD model was developed to study the interaction between injected gas and the liquid bath. The multiphase Eulerian model was used for simulating gas/liquid two-phase flow. The flow pattern in the submerged lance smelting furnace indicated rapid flow development and strong turbulent interactions between the gas and liquid phases. The model was validated based on a water model experiment of the mixing process. Mixing times from the simulation results show good agreement with experimental data. Additionally, based on this model, the gas residence time and liquid copper matte splashing phenomena under varying gas flow rates were investigated.
机译:浴液熔炼技术,例如浸入式喷枪熔炼炉,被用于现代制铜行业。东营方圆有色金属有限公司开发的第一台埋入式喷枪熔炼炉显示出高生产率和节能的潜力。在这项研究中,计算流体动力学(CFD)用于研究炉子的当前设计。建立了三维多相CFD模型,以研究注入的气体与液浴之间的相互作用。使用多相欧拉模型来模拟气/液两相流。浸没式喷枪熔炼炉中的流态表明气流快速发展,气相和液相之间强烈的湍流相互作用。基于混合过程的水模型实验对模型进行了验证。仿真结果表明混合时间与实验数据吻合良好。此外,基于该模型,研究了在不同气体流量下的气体停留时间和液态铜雾面飞溅现象。

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