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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Effects of bluff body shape on the flame stability in premixed micro-combustion of hydrogen-air mixture
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Effects of bluff body shape on the flame stability in premixed micro-combustion of hydrogen-air mixture

机译:氢-空气混合物预混微燃烧中钝体形状对火焰稳定性的影响

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摘要

Combustion characteristics and flame stability of lean premixed hydrogen-air mixture in a micro-combustor with different shapes of bluff body (circle, ellipse, diamond, semicircular, half ellipse, triangle, crescent, arrowhead and wall-blade) under various physical and chemical circumstances were investigated by solving two-dimensional governing equations. The blow-off limit of different bluff bodies, combustion efficiency, wall temperature and exhaust gas temperature of micro-combustor were examined. The results illustrate that in moderate equivalence ratio (φ = 0.5) and low velocity (V = 10 m/s), the maximum flame temperature occurs when a wall-blade is applied as a bluff body. When the inlet mixture velocity increases from V_1 = 10 m/s to V_2 = 20 m/s, the flame temperature of the micro-combustion rises in all cases. Apart from the wall-blade, the maximum flame temperature was recorded at V_2 = 20 m/s for all cases and when the inlet velocity of the mixture increased from 20 m/s to 30 m/s, the flame temperature reduced in all studied cases. Therefore, the flame of micro-combustor with wall-blade bluff body is more stable than other cases. Moreover, the mean wall temperature of the micro-combustor with wall-blade bluff body is highest. Emitter efficiency is very high in the micro-combustor with wall-blade bluff body in lower velocities.
机译:不同形状的钝体(圆形,椭圆形,菱形,半圆形,半椭圆形,三角形,新月形,箭头形和叶片形)的微型燃烧器中稀薄的预混合氢-空气混合物的燃烧特性和火焰稳定性通过求解二维控制方程来研究这种情况。考察了不同钝体的放气极限,燃烧效率,壁温和微型燃烧器的排气温度。结果表明,在中等当量比(φ= 0.5)和低速(V = 10 m / s)下,当将壁叶片用作钝体时会出现最高火焰温度。当进气混合物的速度从V_1 = 10 m / s增加到V_2 = 20 m / s时,微燃烧的火焰温度在所有情况下都会升高。除壁板外,所有情况下的最高火焰温度均记录为V_2 = 20 m / s,当混合物的入口速度从20 m / s增加至30 m / s时,所有研究的火焰温度均降低案件。因此,具有壁式叶片钝体的微型燃烧器的火焰比其他情况更稳定。而且,具有叶片式钝头体的微燃烧器的平均壁温最高。在壁速度较低的情况下,带有壁式叶片钝体的微型燃烧器的发射效率非常高。

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