Modelling of Furnace Tapping with Uniform and Non-Uniform Porosity Distribution

V. Loomba, J. Olsen, K. Einarsrud
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引用次数: 1

Abstract

Tapping flow rates depend on various in-furnace conditions such as the metal and the slag build-up in the furnace and the permeability of the particle bed formed by the unreacted coke. A framework to simulate the flow of the metal and the slag during tapping and production periods is presented in this research. The flow of the metal and the slag is simulated using a multiphase volume of fluid (VOF) approach. The effect of particle bed permeability is included by adding the Ergun equation to the momentum transport equation for both uniformly and non-uniformly distributed particle beds. In this research, the effect of permeability on the tapping flow rates of the metal and the slag are presented. Due to the presence of a single tap-hole, the metal tapped during the tapping process could either be the metal produced in the vicinity of the tap-hole or in other regions. It was seen that decreasing the uniformly distributed permeability decreased the flow rates of the metal and the slag at the tap-hole and consequently it took more taps to reach a steady state, whereas the flow rate of the metal is lower and that of the slag is higher for non-uniform distribution of permeability compared to the uniform distribution. The metal is equally tapped from all regions of the furnace at steady state for uniformly distributed particle bed, whereas more metal produced near the tap-hole is tapped compared to other regions for non-uniform particle bed distribution.
均匀和非均匀孔隙率分布的炉出丝建模
出料流量取决于各种炉内条件,如炉内金属和炉渣的堆积以及未反应焦炭形成的颗粒床的渗透性。本文提出了一个模拟出渣和金属在出渣和生产过程中流动的框架。采用多相流体体积法(VOF)模拟了金属和炉渣的流动。通过在均匀分布和非均匀分布的颗粒床动量输运方程中加入Ergun方程,考虑了颗粒床渗透率的影响。在本研究中,研究了渗透率对金属和渣的出渣速率的影响。由于只存在一个攻丝孔,攻丝过程中攻丝的金属既可以是在攻丝孔附近生产的金属,也可以是在其他地区生产的金属。结果表明,降低均匀分布的渗透率会降低金属和渣在出料口处的流量,从而需要更多的出料口才能达到稳定状态;而渗透率不均匀分布时,金属和渣的流量比均匀分布时要小。对于均匀分布的颗粒床,金属在稳定状态下从炉内所有区域均匀出丝,而对于非均匀颗粒床分布,在出丝孔附近产生的金属比其他区域多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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