首页> 外文会议>Materials Science Technology Conference and Exhibition >DEVELOPMENT AND PRACTICE OF BLAST FURNACE HEARTH DEADMAN CORE TEMPERATURE CALCULATION MODEL BASED ON THE NEW THEORETICAL COMBUSTION TEMPERATURE CALCULATION MODEL
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DEVELOPMENT AND PRACTICE OF BLAST FURNACE HEARTH DEADMAN CORE TEMPERATURE CALCULATION MODEL BASED ON THE NEW THEORETICAL COMBUSTION TEMPERATURE CALCULATION MODEL

机译:基于新型理论燃烧温度计算模型的高炉炉膛死亡核心温度计算模型的开发与实践

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Blast furnace hearth deadman core temperature is one of the very important indexes for the evaluation of the blast furnace hearth activity. By researching the changes of gas compositions in coke circulating zone of blast furnace and analyzing the influence of chemical equilibrium on theoretical combustion temperature, a new theoretical combustion temperature mathematical model was put forward based on the traditional one. On the basis of the new model, blast furnace hearth deadman core temperature calculation model was also improved. The online calculation of the model was realized and practiced in the blast furnace production of a domestic steel company by the technologies of data acquisition, processing and programming. Practice has proven that the model could effectively help foremen better grasp the BF hearth activity in real time and timely avoid the accidents of blast furnace hearth accumulation, so that the hearth activity, quality and yield of hot metal and blast furnace stability were promoted greatly.'
机译:高炉炉膛死胡同核心温度是评估高炉炉膛活性的非常重要的指标之一。通过研究高炉焦炭循环区中的气体组合物的变化,分析化学平衡对理论燃烧温度的影响,基于传统的一种新的理论燃烧温度数学模型。在新模型的基础上,高炉炉膛死亡核心温度计算模型也得到了改善。通过数据采集,加工和编程技术实现了在国内钢铁公司的高炉生产中实现和实践了该模型的在线计算。实践证明,该模型可以有效地帮助我更好地掌握了BF炉膛活动,并及时避免了高炉炉膛积累的事故,使热金属和高炉稳定性的炉膛活性,质量和产量升高。 '

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