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An Exergy Study of Cowper Stove Operations with an Iron Blast Furnace

机译:具有铁炉与铁炉的驱动器炉操作

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This study examines the operations of the Cowper stoves attached to an iron blast furnace from a Second Law perspective. The exergetic efficiency of a 3-stove system operating at cyclic steady state is determined using a model accounting for the thermal, mechanical, and chemical flow exergies of the top gas and blast air, as well as the thermal exergy stored and released in the stoves. The analysis covers the heating and mixing of blast gas in one on-blast stove, and the combustion of top gas and its use to heat two on-gas stoves. The effect of different cycle times, and blast furnace operating conditions on the exergetic efficiency of the cycle is examined, and the optimal cycle time for different blast temperatures found. In addition, a study of the combustion parameters quantifies the advantages of using enriched oxygen in the combustors.
机译:本研究审查了从第二种法律角度来看连接到铁高炉上的电流管道的操作。在循环稳态上运行的3炉系统的前级效率使用顶部气体和喷砂空气的热,机械和化学流量的模型核算确定,以及在炉灶中储存和释放的热驱动器。该分析涵盖了一种在鼓风炉中的爆破气体的加热和混合,以及顶部气体的燃烧及其用于加热两个气体炉灶。研究了不同循环时间和高炉操作条件对循环的前级效率的影响,发现不同爆发温度的最佳循环时间。另外,燃烧参数的研究量化了燃烧器中富含富氧的优点。

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