Numerical simulation of a low oxygen burner with self-circulation of flue gas
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摘要: 在分析了工業中幾種低氧燃燒方式的基礎上,將收縮-擴張結構用于燃燒器空氣通道,開發出了煙氣自循環式低氧燃燒器,同時借助FLUENT軟件對燃燒器進行了大量數值模擬研究.結果表明:喉部的負壓是煙氣卷吸的驅動力,煙氣卷吸量隨喉部面積的縮小而急劇增多;隨著煙氣卷吸量的增多,爐膛中氧含量越來越低,火焰高溫區向燃燒器偏移,火焰逐漸變短.最后,將煙氣自循環式低氧燃燒器用于熔化保溫爐進行了實踐,取得了預期的效果.Abstract: Based on the analysis of some kinds of low oxygen combustion, a low oxygen burner with self-circulation of flue gas was developed with contracted/dilated air channels. The Fluent software was used for numerical simulation of the burner. The results show that the negative pressure at the throat is the driving force of fume entrainment, and the volume of fume entrainment increases dramatically with the decrease of throat area. Because of the increase of fume entrainment, the oxygen concentration in the furnace decreases, the high-temperature zone of the flame moves to the burner, and the length of the flame also becomes short. At last, the low oxygen burner with self-circulation of flue gas was applied to a melting holding furnace, and the anticipated effect was achieved.
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Key words:
- low oxygen combustion /
- burner /
- gas entrainment /
- numerical simulation
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