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首页> 外文期刊>International Journal of Spray and Combustion Dynamics >Experimental characterization of response of lean premixed low-swirl flames to acoustic excitations
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Experimental characterization of response of lean premixed low-swirl flames to acoustic excitations

机译:稀薄预混低涡流火焰对声激发响应的实验表征

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摘要

Acoustically excited lean premixed low-swirl flames were experimentally investigated to gain a better understanding of detrimental thermoacoustic couplings which can occur in applications like low-NO_x gas turbines. Propane-air flames were imaged and analyzed at equivalence ratios of 0.6 to 0.8, mean flow velocities of 3.5 to 5.5 m/s and excitation frequencies of 135 Hz to 555 Hz. It was observed that with increasing excitation frequency, mean flame shape gradually became wider up to a Strouhal number of about 2.5 and then slowly reverted back to the unexcited flame shape. Such large changes in mean flame shape and possibly flow field under acoustic excitations can significantly affect flame dynamics. Increased heat release fluctuations were observed in the flame shear layer at Strouhal numbers from 1 to 2. Rolling up of the flame by vortices was suggested as a driving mechanism for these fluctuations which may lead to combustion instabilities.
机译:通过实验研究了声激发的稀薄预混低涡流火焰,以更好地理解在低NO_x燃气轮机等应用中可能发生的有害热声耦合。以0.6至0.8的当量比,3.5至5.5 m / s的平均流速以及135 Hz至555 Hz的激发频率对丙烷-空气火焰进行成像和分析。观察到随着激发频率的增加,平均火焰形状逐渐变宽,直至约2.5的斯特劳哈尔数,然后缓慢恢复为未激发的火焰形状。在声激发下,平均火焰形状以及可能的流场的如此大的变化会显着影响火焰动力学。在Strouhal数为1到2的火焰剪切层中观察到了更大的放热波动。建议通过涡旋卷起火焰作为这些波动的驱动机制,这可能导致燃烧不稳定。

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