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SIMULATION RESEARCH ON IMPROVING 7.63M COKE OVEN HIGH-HEATING UNIFORMITY IN SHOUGANG

机译:提高首港7.63M焦炉高温均匀性的仿真研究

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Combustion processes of heating gas for 7.63m coke oven in Shougang were simulated by the adoption of CFD modeling. Through calculation and analysis, the following conclusions were obtained: (1) As the heating gas flow rate decreased, the average velocity of gas inside the combustion chamber was reduced; (2)When the gas flow rate in the vertical flue was reduced by 5m~3/h, the average temperature in the combustion chamber was decreased by 0.55°C and the maximum temperature was decreased by 1°C. It meant reducing the gas flow rate in the vertical flue by 5m~3/h had little effect on the overall oven temperature. (3) The reverse operation of gas can increase the internal temperature of the combustion chamber. (4)Increasing the air flow rate at the bottom of the vertical flue, meanwhile, reducing the air flow rate in the middle and upper part can obviously increase the average temperature of the combustion chamber, decrease the maximum temperature and improve the uniformity of the overall oven temperature.
机译:采用CFD造型模拟了首港7.63M焦炉的加热气体燃烧过程。通过计算和分析,获得以下结论:(1)随着加热气体流速降低,燃烧室内的气体的平均速度降低; (2)当垂直烟道中的气体流速降低5m〜3 / h时,燃烧室中的平均温度降低0.55℃,最大温度降低1℃。它意味着将垂直烟道中的气体流速降低5m〜3 / h对整个烤箱温度几乎没有影响。 (3)气体的反向操作可以增加燃烧室的内部温度。 (4)增加垂直烟道底部的空气流速,同时,降低中间部分和上部的空气流速明显增加燃烧室的平均温度,降低最高温度并提高均匀性整体烤箱温度。

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