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Effect of phase-shift feedback on thermoacoustic coupling

机译:相移反馈对热声耦合的影响

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In the present investigation we report our experiments dealing with the effect of phase-shift feedback on chaotic thermoacoustic oscillations in a premixed flame Rijke burner—a fundamental configuration employed frequently in the study of thermoacoustic coupling, which is currently a pressing problem in engineering systems such as gas turbine combustors, furnaces and rocket engine combustors. The phenomenon of thermoacoustic coupling itself is yet another nonlinear feedback coupling phenomenon, which has only very recently been identified exhibit a wide spectrum of complex dynamics, including chaos. The ultimate aim of research in this field is to control thermoacoustic oscillations. That thermoacoustic coupling can exist as chaos and other nonlinear states has implications on existing control strategies. We show here that the commonly employed phase-shift control results in an additional complexity, and that the resulting state could correspond to different nonlinear oscillations depending on the phase-shift feedback parameters.
机译:在本次调查中,我们报告了有关相移反馈对预混火焰Rijke燃烧器中的混沌热声振荡的影响的实验,该实验是热声耦合研究中经常采用的基本配置,目前是工程系统中的紧迫问题,例如作为燃气轮机燃烧室,熔炉和火箭发动机燃烧室。热声耦合现象本身是另一种非线性反馈耦合现象,直到最近才发现这种现象表现出范围广泛的复杂动力学,包括混沌。该领域研究的最终目的是控制热声振荡。热声耦合可以以混沌和其他非线性状态存在,这对现有控制策略有影响。我们在这里表明,常用的相移控制会导致额外的复杂性,并且取决于相移反馈参数,结果状态可能对应于不同的非线性振荡。

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