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    燃烧器的结构优化及变负荷下的燃烧特性研究

    Study on the structural optimization of the burner and the combustion characteristics under variable load

    • 摘要: 以某10 MW燃煤实验台的燃烧器为研究对象,利用模拟方法研究燃烧器结构、不同负荷及不同变负荷速率对燃烧特性的影响。结果表明:在水平浓淡燃烧器内适当的位置增加倾斜角为30°的叶片及改变叶片角度,可显著提高燃烧器的浓缩比并降低燃烧器的浓淡风比。燃烧器出口处的钝体厚度过厚会导致燃烧高温区偏离主燃区,过小会导致燃烧效果不佳。负荷高于60%时炉膛内的气流刚性强,气体在炉膛内的充满度好,燃烧可维持在燃烧器中心水平面左右的区域内。当负荷低于40%,气体刚性随着负荷降低逐渐减弱,气体动力场变差,到达20%负荷时,气流无法维持在燃烧器中心水平面左右的区域内,开始向下二次风中心水平面偏移,但在负荷为40%时,炉膛内的高温区域仍能维持在燃烧区中心水平面左右的区域,燃烧器可稳定运行。而负荷降至20%时,炉膛内的高温区域大幅减少,且温度处于1470 K以上的区域只出现在炉膛中心位置,燃烧稳定性下降。在不同变负荷速率下,燃烧器均可维持稳定燃烧,不会出现大幅度的温度变化,但变负荷运行过程中部分时段会出现燃烧变剧烈的情况。随着变负荷速率增大,炉膛出口的温度变化速率逐渐升高,在高负荷变化速率下,炉膛出口温度变化速率变化幅度减小。

       

      Abstract: Taking the burner of a 10 MW coal-fired test bench as the research object, the influence of the structure of the burner, different loads and different variable load rates on the combustion characteristics was studied by simulation method. The results show that increasing the blade with an inclination angle of 30° at an appropriate position in the horizontal bias burner and changing the blade angle can greatly improve the concentration ratio of the burner and reduce the concentration ratio of the burner. The thickness of the bluff body at the outlet of the burner is too thick, which will cause the high temperature zone of the combustion to deviate from the main combustion zone, and too small will lead to poor combustion effect. When the load is higher than 60%, the gas flow in the furnace is rigid, the gas is filled well in the furnace, and the combustion energy is maintained in the area around the horizontal plane of the burner center. When the load is less than 40%, the gas rigidity gradually weakens with the decrease of the load, and the gas dynamic field becomes worse. When the load reaches 20%, the airflow cannot be maintained in the area around the central horizontal plane of the burner, and begins to shift downward to the central horizontal plane of the secondary air. However, when the load is 40%, the high temperature area in the furnace can still be maintained in the area around the central horizontal plane of the combustion zone, and the burner can burn stably at 40% load. When the load is reduced to 20%, the high temperature area in the furnace is greatly reduced, and the area with temperature above 1470 K only appears in the center of the furnace, and the combustion is unstable. Under different variable load rates, the burner can burn stably, and there will be no significant temperature change, but during the variable load operation, there will still be some time periods when the combustion becomes severe. With the increase of variable load rate, the temperature change rate of furnace outlet increases, and the temperature change rate of furnace outlet decreases under high load change rate.

       

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