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Investigation of Heat Transfer Phenomena in Blast Furnace Tuyere/Blowpipe Region

机译:高炉风口/吹气区传热现象调查

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The blast furnace (BF) is a crucial stage in the iron-steel making process. Pulverized coal injection (PCI) and natural gas (NG) have been utilized in blast furnaces as a substitute fuel source for reducing coke rate. Due to introduction of injected fuels into a blast furnace, the combustion and heat transfer in the tuyere/blowpipe region affects the tuyere/blowpipe structure. A comprehensive computational fluid dynamics (CFD) model including PCI/NG combustion, multi-mode heat transfer for the blowpipe/tuyere region of a blast furnace at AK Steel Dearborn Works has been developed, considering detailed material properties in the blowpipe region. The model has been validated by comparing the blowpipe skin temperature profile with thermographic images under typical operating conditions. Based on the developed CFD model, the detailed PCI/NG co-injection combustion has been investigated and the thermal effect on the tuyere tip has been revealed.
机译:高炉(BF)是铁钢制造过程中的关键阶段。在高炉中使用粉煤喷射(PCI)和天然气(NG)作为降低焦炭速率的替代燃料来源。由于将注入的燃料引入到高炉中,风口/吹气区中的燃烧和传热会影响风口/吹气结构。已经开发了一种综合计算流体动力学(CFD)模型,包括PCI / NG燃烧,用于AK Steel Dealborn作品的高炉喷气管/风口区域的多模传热,考虑到吹风管区域的详细材料特性。通过在典型的操作条件下将吹料皮肤温度曲线与热量图像进行比较,通过将施用模型进行验证。基于开发的CFD模型,已经研究了详细的PCI / NG共注入燃烧,并揭示了对风口尖端的热效应。

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