论文标题

控制局部释放速率波动的生长以抑制热声不稳定性

Control of growth of local heat release rate fluctuations to suppress thermoacoustic instability

论文作者

Raghunathan, M., George, N. B., Unni, V. R, Kurths, J., Surovyatkina, E., Sujith, R. I.

论文摘要

这项实验研究研究了在湍流的悬崖体稳定燃烧器中从稳定操作到热声不稳定性的动态过渡。我们进行实验以表征利用声压和局部释放速率波动的动力过渡。我们观察到这些实验的过渡到热声不稳定性,因为我们降低了对等效的比率向燃油叶子设置。更重要的是,在发生热声不稳定性的情况下,我们观察到在大规模的空间或时间模式出现之前,我们观察到在悬崖体内附近的局部热释放速率波动的显着增长。通过在虚张声势体内对策略性定位插槽(穿孔),我们确保在悬而未决条件下远离热声不稳定性发作的工作条件下,在悬崖体附近的停滞区的局部热释放速率波动减少。局部释放速率波动的这种降低可确保避免过渡到热声不稳定性。我们发现,在停滞区的这些局部热释放速率波动不会使这些局部热释放速率波动释放导致过渡到热声不稳定性的修改构型。我们还揭示了基于局部释放速率波动的增长的有效抑制策略需要优化插槽的面积比为给定的悬崖体位置。此外,抑制策略还取决于悬崖体上穿孔的空间分布。值得注意的是,插槽的不适当分布不会消除停滞区的局部释放速率波动,甚至可能导致压力振荡的幅度显着增加。

This experimental study investigates the dynamical transition from stable operation to thermoacoustic instability in a turbulent bluff-body stabilized dump combustor. We conduct experiments to characterize the dynamical transition utilizing acoustic pressure and local heat release rate fluctuations. We observe the transition to thermoacoustic instability for these experiments as we decrease the equivalence ratio towards a fuel-lean setting. More importantly, we observe significant growth of local heat release rate fluctuations near the bluff-body well before the appearance of large-scale spatial or temporal patterns during the occurrence of thermoacoustic instability. By strategically positioning slots (perforations) on the bluff-body, we ensure the reduction of the growth of local heat release rate fluctuations at the stagnation zone near the bluff-body at operating conditions far away from the onset of thermoacoustic instability. This reduction in the local heat release rate fluctuations ensures that the transition to thermoacoustic instability is avoided. We find that modified configurations of the bluff-body that do not quench these local heat release rate fluctuations at the stagnation zone results in the transition to thermoacoustic instability. We also reveal that an effective suppression strategy based on the growth of local heat release rate fluctuations requires an optimization of the area ratio of the slots for a given bluff-body position. Further, the suppression strategy also depends on the spatial distribution of perforations on the bluff-body. Notably, an inappropriate distribution of the slots which does not quench the local heat release rate fluctuations at the stagnation zone may even result in a dramatic increase in amplitudes of pressure oscillations.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源