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The Effect of Lewis Number on Radiative Extinction and Flamelet Modeling

机译:Lewis数对辐射消光和小火焰建模的影响

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The effect of Lewis number on radiative extinction and flamelet modeling is numerically investigated in this study. To highlight the effect of radiation on extinction, flames at low strain rates are considered. The results show that at large Lewis numbers, flames are relatively "weak" and become susceptible to radiative heat losses. With an increase of Lewis number, radiative extinction limit, which has been reported in recent studies to occur at low strain rates, is found to be pushed toward higher values of strain rates. The study also examines the influence of Lewis number and its interaction with transient effects on flamelet combustion modeling. Transient effects are simulated by considering flames subjected to fluctuating reactant concentrations, fluctuating reactant temperatures,a nd variable partial premixing. Based on the flame temperature response, the results indicate that flames subjected to fluctuating reactant concentrations are not much affected by Lewis number. However, a large Lewis number may cause extinction for flames subjected to time dependent concentration fluctuations at high strain rates. The response of flames subjected to variable reactant temperatures or partial premixing is found to increase with an increase of Lewis number.
机译:在这项研究中,数值研究了路易斯数对辐射消光和小火焰建模的影响。为了突出辐射对消光的影响,考虑了低应变速率下的火焰。结果表明,在较大的Lewis数下,火焰相对“弱”,并且容易受到辐射热损失的影响。随着路易斯数的增加,发现在低应变率下发生的辐射消光极限被推向较高的应变率值。该研究还研究了路易斯数及其与瞬态效应的相互作用对火焰燃烧模型的影响。通过考虑火焰在变化的反应物浓度,变化的反应物温度和可变的部分预混合条件下模拟瞬态效应。基于火焰温度响应,结果表明,经受波动的反应物浓度的火焰受路易斯数的影响不大。但是,较大的路易斯数可能会导致在高应变速率下受到时间依赖性浓度波动的火焰的熄灭。人们发现,随着路易斯数的增加,经受可变反应物温度或部分预混合的火焰的响应也会增加。

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