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Numerical Simulation of Fluid Flow and Temperature Field of Iron-bath Reactor

机译:铁浴反应器流场和温度场的数值模拟

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摘要

Based on the commercial computational fluid dynamics software, Fluent, the fluid flow and temperature field in an iron-bath reactor were simulated numerically, and the effects of top-blown and side-blown operating parameters on the mixing time of iron bath, distribution range of oxygen in top space, and post-combustion ratio were investigated. The simulated results showed that the mixing time of iron bath increased initially and then decreased with the increase of inclined degree and immersion depth of side-blown lance. The distribution range of oxygen became wider as pulling the top lance away from the iron bath. Furthermore, post-combustion ratio was reduced given the top lance was too close the bath. The simulation results provide theoretical base for the process optimization of iron-bath reactor and further development of new type iron-bath smelting reduction process.
机译:基于商业化的流体动力学软件Fluent,对铁浴反应器内的流体流动和温度场进行了数值模拟,并研究了顶吹和侧吹操作参数对铁浴混合时间,分布范围的影响。研究了顶部空间中的氧气含量以及后燃烧率。模拟结果表明,随着侧吹喷枪的倾斜度和浸入深度的增加,铁浴的混合时间开始增加,然后减少。随着顶部喷枪从铁浴中拉出,氧气的分布范围变得更宽。此外,由于顶部喷枪太靠近熔池,因此降低了燃烧后比率。模拟结果为铁浴反应器的工艺优化和新型铁浴冶炼还原工艺的进一步发展提供了理论依据。

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