不同强迫水平下稀预混火焰的放热速率和压力波动

Aniekan Okon, H. Kurji, A. Medina, Yiqin Xue
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引用次数: 0

摘要

通过研究燃烧室内火焰对声振荡的非线性响应,可以预测燃烧不稳定的极限环。本研究使用火焰描述函数框架来检验管道的强迫频率和基频对燃烧室主要声学模式大小的影响。结果表明,相对于燃烧室基频,强迫频率对燃烧室主导声模的幅度有显著影响,这与最近的研究结果一致。这类结果为分离燃烧系统的不稳定边界提供了一种很有前途的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heat release rate and pressure fluctuation of lean premixed flame at different forcing levels
Prediction of limit cycle of combustion instability could be achieved by the examination of the nonlinear flame response to the acoustic oscillations within the combustor. This study uses the flame describing function framework to examine the effects of the forcing frequency and the fundamental frequency of the duct on the magnitude of the dominant acoustic modes of the combustion chamber. Results showed a phenorminal influence of the forcing frequencies on the magnitude of the dominant acoustic modes of the combustor with respect to its fundamental frequency, which are in agreement with recent studies. Results of this kind provide a promising novel approach to alienating instability boundaries in a combustion system.
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