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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Improved cooler design of electric arc furnace refractory in mining industry using thermal analysis modeling and simulation
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Improved cooler design of electric arc furnace refractory in mining industry using thermal analysis modeling and simulation

机译:利用热分析建模和仿真改进采矿业电弧炉耐火材料的冷却器设计

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摘要

Production of steel and nickel using the electric arc furnace should be focused on the intensification of energy. Improvement of energy efficiency of the most consuming facilities was achieved by improving the use of alternative energy minimization such as reducing the heat lost of hot gases, minimizing the heat radiated through refractory linings of metallurgical furnaces, and cooling the highly thermally stressed components. The refractory of electric arc furnace should be modified to achieve the best cooling system of the furnace. In this physical modeling and simulation works, four modification scenarios of wall refractory designs were simulated, i.e. refractory with basic design, refractory with deep plate coolers, refractory with extra plate coolers, and refractory with wall falling film coolers. Finally, the use of deep plate cooler and the existing waffle cooler system was considered to be the best design of efficient electric arc furnace operationally. (C) 2014 Elsevier Ltd. All rights reserved.
机译:使用电弧炉生产钢和镍应集中在能量的增强上。通过改善对替代能源的利用(例如减少热气的热量散失,使通过冶金炉的耐火衬里辐射的热量最小化以及冷却高热应力组件)来提高最消耗设施的能源效率。应对电弧炉的耐火材料进行改进,以达到最佳的炉膛冷却系统。在此物理建模和模拟工作中,模拟了壁耐火材料设计的四种修改方案,即基本设计的耐火材料,深板式冷却器的耐火材料,额外的板式冷却器的耐火材料和落膜冷却器的耐火材料。最后,深板式冷却器和现有的华夫冷却器系统的使用被认为是高效电弧炉在操作上的最佳设计。 (C)2014 Elsevier Ltd.保留所有权利。

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