Center feed swirl pulverized coal burner and over-burning air arrangement structure
A technology of layout structure and swirl burner, which is applied in the direction of the burner, burner, and combustion type of powder fuel, can solve the problems of poor adaptability to coal types, high emissions, and poor adaptability to variable loads, etc., to achieve increased Large contact area, reduced NOx generation, and the effect of reducing the amount of NOx generated
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specific Embodiment approach 1
[0027] Specific implementation mode one: as Figure 1~6 As shown, the arrangement structure of the central powder feeding swirl pulverized coal burner and the overfire air in this embodiment includes a central powder feeding swirl burner, a primary overburning air nozzle group 4, and a plurality of secondary overburning air nozzles 5 , the primary overburning air regulating damper 4-1 and the secondary overburning air regulating damper 5-1; the center powder feeding swirl burner includes a primary air duct 1, an inner secondary air channel 2, an inner secondary air swirl Flow device 2-1, outer secondary air channel 3, outer secondary air cyclone 3-1; the primary air pipe 1 is set in the inner secondary air channel 2, and the inner secondary air channel 2 is set in the outer In the secondary air channel 3, the primary air duct 1, the inner secondary air channel 2 and the outer secondary air channel 3 are coaxially arranged, and the inner secondary air channel 2 is provided with...
specific Embodiment approach 2
[0029] Specific implementation mode two: as Figure 1~3 As shown, the radial distance from the axis of the thin jet tubes of the primary overburning air nozzle group 4 in this embodiment to the axis of the central powder feeding swirl burner is in the range of 300-1500 mm. With such a design, the air for pulverized coal combustion is mixed in step by step to strengthen the staged combustion of air. Other components and connections are the same as those in the first embodiment.
specific Embodiment approach 3
[0030] Specific implementation mode three: as Figure 1~3 As shown, in this embodiment, the radial distance from the axis of the secondary overburning air nozzle 5 to the axis of the primary overburning air nozzle group 4 is 1000-5000 mm. With such a design, the air for pulverized coal combustion is mixed in step by step, and the staged combustion of air is strengthened on the premise of improving the adaptability of coal types. Other compositions and connections are the same as those in Embodiment 1 or 2.
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