TSL 冶炼工艺的数值模拟与改进:长矛弯曲的影响

IF 2.5 3区 材料科学 Q3 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Xiaoyi Cai, Wei Wang, Hongliang Zhao, Fengqin Liu, Chao Lv, Hong Yong Sohn
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引用次数: 0

摘要

喷枪是顶部浸没式喷枪(TSL)熔炉的核心部件,也是最容易损坏的部件。建立了一个数值模拟模型来研究带弯曲喷枪的 TSL 熔炼过程,并分析了弯曲角度对流场、波动和飞溅的影响,以及喷枪壁和炉体上的平均剪切力。本研究采用了 VOF 多相模型和可实现 k-ε 湍流模型。模拟结果表明,弯曲喷枪导致流场分布不对称,界面波动更严重,熔渣飞溅量明显增加,喷枪和炉体壁上的平均剪应力也明显增大。与垂直喷枪相比,弯曲喷枪的最大瞬时飞溅量增加了 33.3%。模拟了喷枪旋转对炉子运行的改善,以减轻喷枪弯曲的影响。与原始垂直喷枪的结果相比,旋转喷枪在喷枪壁上获得的平均剪切力更小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Numerical Simulation and Improvement of TSL Smelting Process: the Effect of Lance Bending

Numerical Simulation and Improvement of TSL Smelting Process: the Effect of Lance Bending

The lance is the heart of Top-Submerged-Lance (TSL) furnace and is also the most vulnerable part. A numerical simulation model was developed to study the TSL smelting process with a bending lance, and the effects of the bending angle on the flow field, the fluctuation and splashing, and the mean shear on the walls of the lance and the furnace body were analyzed. A VOF multi-phase model coupled with a Realizable k−ε turbulence model was adopted in this work. The simulation results reveal that the bending lance leads to asymmetrical flow field distribution, severer interface fluctuation, significantly higher slag splashing and mean shear stress on the walls of both lance and furnace body. The maximum instantaneous splashing quantity with the bending lances was increased by 33.3% compared to the vertical lance. An improvement by lance rotation on furnace operation was simulated to mitigate the effect of lance bending. Compared with the result of the original vertical lance, a smaller mean shear on the lance wall was achieved for a rotated lance.

Graphical Abstract

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来源期刊
Journal of Sustainable Metallurgy
Journal of Sustainable Metallurgy Materials Science-Metals and Alloys
CiteScore
4.00
自引率
12.50%
发文量
151
期刊介绍: Journal of Sustainable Metallurgy is dedicated to presenting metallurgical processes and related research aimed at improving the sustainability of metal-producing industries, with a particular emphasis on materials recovery, reuse, and recycling. Its editorial scope encompasses new techniques, as well as optimization of existing processes, including utilization, treatment, and management of metallurgically generated residues. Articles on non-technical barriers and drivers that can affect sustainability will also be considered.
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