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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Effects of operating pressure on flame oscillation and emission characteristics in a partially premixed swirl combustor
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Effects of operating pressure on flame oscillation and emission characteristics in a partially premixed swirl combustor

机译:工作压力对部分预混旋流燃烧室火焰振荡和排放特性的影响

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The influence of varying combustor pressure on flame oscillation and emission characteristics in the partially premixed turbulent flame were investigated. In order to investigate combustion characteristics in the partially premixed turbulent flame, the combustor pressure was controlled in the range of -30 to 30. kPa for each equivalence ratio (Φ= 0.8-1.2). The r.m.s. of the pressure fluctuations increased with decreasing combustor pressure for the lean condition. The combustor pressure had a sizeable influence on combustion oscillation, whose dominant frequency varied with the combustor pressure. Combustion instabilities could be controlled by increasing the turbulent intensity of the unburned mixture under the lean condition. An unstable flame was caused by incomplete combustion; hence, EICO greatly increased. Furthermore, EINO. _x simply reduced with decreasing combustor pressure at a rate of 0.035. g/10. kPa. The possibility of combustion control on the combusting mode and exhaust gas emission was demonstrated.
机译:研究了燃烧器压力变化对部分预混湍流火焰中火焰振荡和排放特性的影响。为了研究部分预混湍流火焰中的燃烧特性,对于每个当量比(Φ= 0.8-1.2),将燃烧器压力控制在-30至30 kPa的范围内。 r.m.s.在稀薄条件下,压力波动的变化随燃烧室压力的降低而增加。燃烧器压力对燃烧振荡有相当大的影响,其主导频率随燃烧器压力而变化。燃烧不稳定性可以通过在稀薄条件下增加未燃烧混合物的湍流强度来控制。不完全燃烧引起不稳定的火焰。因此,EICO大大增加了。此外,EINO。 _x随燃烧室压力的降低以0.035的速率简单地减小。克/ 10。千帕证明了对燃烧模式和废气排放进行燃烧控制的可能性。

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