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Mathematical Model and Stabilization System for Slag Mode of Blast Furnace Operation

机译:高炉运行渣模式数学模型及稳定系统

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The present-day blast furnace production industry has achieved a high standard in the production technology, development of its raw materials and fuel facilities, mathematical modelling of its processes, as well as in the control, automation and optimization systems provision. Nevertheless, the enormous range and sophistication of the physico-chemical processes undergoing in the blast furnace is characterized up to now by a discrepancy between the results of the fundamental research and practical state-of-the art means of upgrading the slag formation procedure during the blast furnace smelting.The article presents a description of the blast furnace slags viscosity model, algorithms of its programmed realization and examples of their usage in the blast furnaces operation control, evaluation of the metallurgical value of the iron ore materials, coke and coals for coal-dust mixes, as well as for solving the tasks of the current and strategic planning of the blast furnace departments operation, and for optimizing the policy of sales and purchases.
机译:本日高炉生产行业在生产技术方面取得了高标准,其原材料和燃料设施的发展,其流程的数学建模,以及控制,自动化和优化系统的规定。然而,在高炉经历物理化学过程的巨大范围和复杂程度的特征在于到现在由基础研究的过程中升级炉渣形成程序的实际国家的本领域装置的结果之间的差异高炉smelting.The本文介绍了高炉炉渣粘度模型的描述,它的编程实现和它们在爆炸用法的示例算法炉运转控制,铁矿石原料,焦炭的冶金值和煤煤的评价 - 吸尘机混合,以及解决高炉部门当前的操作和战略规划的任务,以及优化销售和采购的政策。

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