Development of a Simulation Model of the Heat Transfer Process in the Hot-Blast Stove Checkerwork

A. Prasolov, S. Andreev
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引用次数: 1

Abstract

The blast furnace hot-blast stove is a regenerator where the checkerwork heating and cooling processes take place in series. Several hot-blast stoves combined into a block are used for continuous hot air supply to the blast furnace. Every hot-blast stove in the block has unique characteristics. The characteristics can be taken into account in synchronous operation within the blast furnace unit to increase the heat output and the temperature of the hot air blown into the blast furnace. Uncontrolled checkerwork degradation occurs during the hot-blast stove process. This leads to the necessity of adjusting the operating modes of every hot-blast stove. Adjusting assumes changing the periods time of the hot-blast stove process while heating and blast. It is necessary to continuously assess the hot-blast stove thermal efficiency by indirect characteristics due to impossibility to control the checkerwork state. The simplified simulation model of the heat transfer process in hot-blast stove checkerwork is proposed. The simulation model is preliminarily adapted to a new hot-blast stove. Continuous comparison of blast parameters from the real hot-blast stove with parameters calculated in the simulation model of the heat transfer process makes it possible to evaluate the efficiency of every hot-blast stove throughout its lifetime. The simulation model using in the switching control system makes it possible to adj ust heating and blast for every hot-blast stove in the block in order to obtain the maximum temperature of hot air supplied to the blast furnace, which will reduce specific coke consumption during cast iron smelting.
热风炉篦机传热过程仿真模型的建立
高炉热风炉是一种循环加热和冷却过程串联进行的蓄热器。几个热风炉组合成一个缸体,为高炉提供连续的热风。小区里的每个热风炉都有自己独特的特点。在高炉机组内同步运行时可以考虑到这一特性,以增加热量输出和吹入高炉的热风温度。在热风炉过程中,不受控制的格子退化发生。这就需要调整每个热风炉的工作模式。调整是指改变热风炉在加热和鼓风过程中的周期时间。由于检查状态无法控制,需要通过间接特性对热风炉热效率进行连续评价。提出了热风炉检查过程的简化仿真模型。该仿真模型初步适用于某新型热风炉。将实际热风炉的热风参数与传热过程模拟模型中计算的参数进行连续比较,可以对每台热风炉在其整个寿命周期内的效率进行评估。该仿真模型应用于切换控制系统中,可以对块内各热风炉的加热和鼓风进行调整,以获得送至高炉的最高热风温度,从而降低铸铁冶炼时的焦炭比耗。
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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