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HEAT TRANSFER ANALYSIS IN A BLAST FURNACE TUYERE NOSE

机译:高炉风口鼻的传热分析

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摘要

The Blast furnace process is a counter current moving bed chemical reactor to reduce iron oxides to iron for iron/steel making. In the process, tuyeres are used to introduce hot air (blast) and fuel (gas or pulverized coal) into the furnace for combustion. The nose of a tuyere, composed of copper material, that is exposed to a high temperature environment and a cooling water pipe is embedded to prevent melting of the material. In this work, heat transfer and temperature distributions have been analyzed using the computational fluid dynamics commercial software, FLUENT®. The computations have included the cooling water flow and conjugate heat transfer in the tuyere nose. Both convection and radiation heat transfer on the surfaces are included. Different geometry and operating conditions were considered. The results have indicated that insufficient cooling in a large area between the nose inlet and outlet pipe can cause failures of the tuyere nose.
机译:高炉工艺是逆流移动床化学反应器,用于将铁的氧化物还原为铁,用于炼铁/炼钢。在此过程中,风口用于将热空气(鼓风)和燃料(天然气或煤粉)引入炉中进行燃烧。由铜材料制成的风口的鼻子暴露在高温环境中,并且嵌入了冷却水管以防止材料熔化。在这项工作中,已经使用计算流体动力学商业软件FLUENT®分析了传热和温度分布。计算包括风口前端的冷却水流量和共轭传热。表面上的对流和辐射热传递都包括在内。考虑了不同的几何形状和操作条件。结果表明,机头入口和出口管之间大面积的冷却不足会导致风口的故障。

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