Effect of natural gas flow rate and temperature on the processes occurring in a blast furnace tuyere with heat-insulating insert in blast channel

S. Albul, O. Kobelev, A. Radyuk, A. Titlyanov, I. A. Levitskii
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Abstract

The purpose of this work was to analyze the effect of a heat-insulating insert, as well as the flow rate and temperature of natural gas on the processes occurring in blast channel of an air tuyere. The paper analyzes the results of industrial and numerical experiments obtained by different researchers on the use of various methods for increasing the completeness of combustion reaction within the air tuyere of natural gas (NG) fed into it: increase of NG flow rate; increase of NG temperature; the use of heat-insulating inserts installed in the inner glass of the air tuyere. Using the Ansys Fluent software complex, the effect of a heat-insulating insert and increase in NG flow rate on the temperature and composition of gases leaving the tuyere of blast furnace no. 5 of PJSC Severstal was studied. It was found that with an increase in NG flow rate from 0.283 to 0.328 kg/s, the temperature of the gas medium at the tuyere outlet decreases by 6 °С for the variant without an insert and increases by 3 °С for the variant with it. When studying the effect of a heat-insulating insert and increase in NG temperature (in different combinations) on the processes occurring in a tuyere, it was found that temperature of the gaseous medium at the tuyere outlet in case of using a heat-insulating insert without NG heating is slightly higher than when NG is heated to 200 °С without inserts. However, the effect of NG heating in the presence of an insert is significantly higher than without it – there is mutual amplification of two factors influencing the completeness of NG combustion within the tuyere, accompanied by protection of the tuyere inner nozzle from burnout.
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天然气流量和温度对风道内装有隔热垫块的高炉风口内发生过程的影响
本文的目的是分析隔热插片以及天然气的流量和温度对风口风道内发生的过程的影响。本文分析了不同研究人员在工业实验和数值实验中采用不同方法提高天然气进风口内燃烧反应的完全性的结果:提高天然气流量;NG温度升高;使用隔热插片安装在风口的内玻璃上。利用Ansys Fluent综合软件,研究了加装绝热衬套和增加NG流量对1号高炉出口气体温度和成分的影响。对PJSC Severstal 5进行了研究。结果表明,当NG流量从0.283 kg/s增加到0.328 kg/s时,无插入型的风口出口气体介质温度降低了6°С,有插入型的风口出口气体介质温度升高了3°С。在研究隔热插片和天然气温度升高(不同组合)对风口内发生的过程的影响时,发现使用隔热插片而不加热天然气时,风口出口气体介质的温度略高于天然气加热到200°С而不使用插片时的温度。然而,在插入物存在的情况下,天然气加热的效果明显高于没有插入物的情况——影响天然气在风口内燃烧的完整性的两个因素相互放大,同时还保护了风口内喷嘴免于燃烬。
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