首页> 外文期刊>日本燃焼学会誌 >Response Characteristics of Burning Velocity, Velocity Gradient, and Preheat Zone Thickness of Methane-Air Premixed Wall-stagnation Flame to Sinusoidal Oscillation of Equivalence Ratio
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Response Characteristics of Burning Velocity, Velocity Gradient, and Preheat Zone Thickness of Methane-Air Premixed Wall-stagnation Flame to Sinusoidal Oscillation of Equivalence Ratio

机译:燃烧速度,速度梯度和预热区厚度的响应特性,甲烷 - 空气预混壁 - 停滞火焰与等同率的正弦振荡

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摘要

This study investigated the characteristics of the response of a lean methane-air premixed flame to sinusoidal oscillation of the equivalence ratio. The oscillation frequency was varied from 5 to 50 Hz. The mean equivalence ratio and fluctuation amplitude were 0.85 and 0.05, respectively. In the low frequency range, the oscillation amplitudes of the flame position x_f, burning velocity Su, velocity gradient g, and preheat zone thickness δ_p responded quasi-steadily to the equivalence ratio oscillation. However, in the high frequency range they responded unsteadily: that is, the fluctuation amplitude of x_f became less than that of the static flame, but the oscillation amplitudes of Su, g, and δ_p exceeded those of the static flame with respect to frequency over the same equivalence ratio fluctuation range, and these values peaked at 40 Hz. The increase in oscillation amplitude of Su with respect to frequency was likely a result of the dynamic characteristics of the flame movement, mass transfer from unbumed gas to the side of the flame, and the preheat time of the mixture.
机译:本研究研究了瘦甲烷 - 空气预混燃烧对等效率的正弦振荡的响应的特征。振荡频率从5到50 Hz变化。平均等效比和波动幅度分别为0.85和0.05。在低频范围内,火焰位置​​X_F的振荡幅度,燃烧速度SU,速度梯度G和预热区厚度Δ_p稳定地响应于等效比振荡。然而,在高频范围内,它们不稳定地响应:即,X_F的波动幅度变得小于静态火焰的波动幅度,但SU,G和Δ_P的振荡幅度超过频率超过频率的振荡幅度相同的等效比波动范围,并且这些值达到40 Hz。 SU的振幅振幅相对于频率的增加可能是火焰运动的动态特性的结果,从未产生的气体到火焰侧的质量转移,以及混合物的预热时间。

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