The investigation of the thermal performance of the graphitized hollow electrode in the "ladle-furnace" with the supply of neutral gas

V. O. Ruban, O. M. Stoianov
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Abstract

The article presents an analysis of heat transfer efficiency from an electric arc discharge formed in the sub-electrode zone to a metal bath under different operating conditions of the “ladle-furnace” (LF). A numerical modeling methodology has been developed, and the obtained data have been analyzed to determine the heat transfer efficiency with the supply of neutral gas through a graphitized hollow electrode (GHE). The objective of this study is the numerical modeling of the influence of changing the geometric parameters of the metal bath cavity formed by gas injection through the channel of the graphitized hollow electrode on the heat transfer efficiency from the electric arc to the metal bath at different thickness of the slag cover in the “ladle-furnace”. Research methods. Numerical modeling of the heating of the metal bath was performed on a developed 3D model of a steel ladle with liquid metal and a cavity zone formed under the action of an electric arc and gas supplied through the channel of the graphitized hollow electrode. Heating was conducted under different geometric parameters of the cavity and varying heights of the slag cover. The obtained data were analyzed, indicating the advantage of using the graphitized hollow electrode with gas supply through its channel compared to a conventional electrode. Results obtained. The share of heat absorbed by the slag and metal under the conditions of using a conventional electrode and a hollow electrode with gas supply through its channel was determined. The influence of the parameters of the reaction zone formed under the GHE on the heat transfer from the electric arc to the metal bath was determined, with maximum temperature increase values of the metal amounting to 0.6 ºC/min. Scientific novelty. New data were obtained regarding the influence of neutral gas supply through GHE on the amount of heat transferred to the metal by convection, and indicators of the heat flux density from the electric arc to the metal cavity in the sub-electrode zone were determined. Practical significance. It was determined that increasing the area of the metal cavity by supplying gas through the GHE channel improves the heat transfer from the electric arc to the metal bath. Meanwhile, increasing the thickness of the slag cover reduces heat losses to the furnace atmosphere. The carried out research provided important data regarding the thermal performance of the "ladle-furnace" in the sub-electrode zone, which can be further utilized for process optimization.
研究了石墨化空心电极在“钢包炉”中加入中性气体时的热性能
本文分析了在不同的“钢包炉”(LF)操作条件下,从亚电极区电弧放电到金属浴的传热效率。本文提出了一种数值模拟方法,并对所获得的数据进行了分析,以确定中性气体通过石墨化空心电极(GHE)时的传热效率。本研究的目的是通过数值模拟改变石墨化空心电极通道内注气形成的金属浴腔的几何参数对“钢包炉”中不同厚度渣盖处电弧到金属浴的换热效率的影响。研究方法。在建立的钢包三维模型上,对金属液和空腔区在电弧和通过石墨化空心电极通道供气作用下的加热过程进行了数值模拟。在不同的空腔几何参数和不同的渣盖高度下进行了加热。对所得数据进行了分析,表明石墨化空心电极与传统电极相比具有通过通道供气的优势。结果。测定了在常规电极和空心电极通道供气条件下,炉渣和金属的吸热比例。确定了在GHE下形成的反应区参数对电弧向金属浴传热的影响,金属的最大升温值可达0.6ºC/min。科学的新奇。获得了通过GHE供气对对流传热给金属的影响的新数据,确定了亚电极区电弧到金属腔的热流密度指标。现实意义。结果表明,通过GHE通道供气来增加金属腔的面积,可以改善电弧到金属浴的热传递。同时,增加炉渣覆盖层的厚度可以减少炉内大气的热损失。该研究为研究亚电极区“钢包炉”的热性能提供了重要数据,可进一步用于工艺优化。
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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