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REACTION ZONE WEAKENING EFFECTS UNDER HOT AND DILUTED OXIDANT STREAM CONDITIONS

机译:在热和稀释的氧化剂流条件下的反应区弱化效应

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This paper reports computational results, to complement experimental observations, on the turbulence-chemistry interaction of nonpremixed jet flames issuing into a heated and highly diluted oxidant stream. It is found experimentally that large-scale vortices and flame stretch can lead to spatial thinning and a decrease in OH concentration. This reduction in OH is described as a weakening of the reaction zone. Accompanying reaction zone weakening is also an increase in H_CO levels. The reduction in reaction rates is most noticeable at low oxidant stream O_2 levels. The heated and low oxygen oxidant conditions typify those of moderate or intense low oxygen dilution (MILD) combustion. The computational results indicate that the effects of the low oxygen levels of MILD combustion leads to both a reduction in reaction rates and an increase in transport of O_2 across the reaction zone. The relationship between the reaction rate and level of O_2 permeation suggests that a form of partial premixing can occur under MILD combustion conditions. This partial premixing leads to the formation of flame intermediates, which contribute to the stabilization of the flames. The permeation effects are most pronounced at high strain rates, which are commonly encountered in practical MILD combustors.
机译:本文报告了计算结果,作为对实验观察结果的补充,涉及非预混喷射火焰在加热和高度稀释的氧化剂流中的湍流-化学相互作用。实验上发现,大范围的涡旋和火焰伸展会导致空间变薄和OH浓度降低。 OH的这种减少被描述为反应区的减弱。伴随反应区减弱,H_CO水平也增加。在低氧化剂流O_2水平下,反应速率的降低最为明显。加热和低氧氧化剂条件代表了中等或强烈的低氧稀释(MILD)燃烧的条件。计算结果表明,低氧水平的MILD燃烧会导致反应速率降低和整个反应区O_2的传输增加。反应速率与O_2渗透水平之间的关系表明,在MILD燃烧条件下,可能会发生部分预混合形式。这种部分预混合导致形成火焰中间产物,这有助于稳定火焰。在高应变率下,渗透作用最为明显,这在实际的MILD燃烧器中通常会遇到。

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