论文标题

Rijke Tube:非线性振荡器

Rijke tube: A nonlinear oscillator

论文作者

Manoj, Krishna, Pawar, Samadhan A., Kurths, Jürgen, Sujith, R. I.

论文摘要

动力学系统理论已成为研究的跨学科领域,以表征现实世界中的复杂动力过渡。在过去的几十年中,使用振荡器的不同阶段模型发现了各种非线性动力学现象和分叉。理论上已经开发了不同的措施和方法,以检测,控制或抑制非线性振荡。但是,在实验中获得这种现象通常是具有挑战性,耗时和风险的,这主要是由于实验过程中对某些参数的控制有限。通过这篇评论,我们旨在将范式且易于配置的Rijke Tube振荡器引入动力学系统社区。燃烧界通常将Rijke管用作研究热声不稳定性的有害现象的原型。从动力学系统理论中,此类Rijke管中的最新研究利用了各种方法,以更好地了解热声振荡的发生,它们的预测和缓解。在单一和耦合的Rijke管振荡器中,已经报道了各种动力学行为的存在。这些行为包括分叉,混乱的途径,噪声引起的过渡,同步和振荡的抑制。已经制定了各种预警措施来预测热声不稳定性。因此,本综述,在实验发现和建模物理学中观察到的不同非线性现象方面,rijke管振荡器的实用性得到了巩固。因此,超越物理与工程社区之间的界限。

Dynamical systems theory has emerged as an interdisciplinary area of research to characterize the complex dynamical transitions in real-world systems. Various nonlinear dynamical phenomena and bifurcations have been discovered over the decades using different reduced-order models of oscillators. Different measures and methodologies have been developed theoretically to detect, control, or suppress the nonlinear oscillations. However, obtaining such phenomena experimentally is often challenging, time-consuming, and risky, mainly due to the limited control of certain parameters during experiments. With this review, we aim to introduce a paradigmatic and easily configurable Rijke tube oscillator to the dynamical systems community. The Rijke tube is commonly used by the combustion community as a prototype to investigate the detrimental phenomena of thermoacoustic instability. Recent investigations in such Rijke tubes have utilized various methodologies from dynamical systems theory to better understand the occurrence of thermoacoustic oscillations, their prediction and mitigation, both experimentally and theoretically. The existence of various dynamical behaviors has been reported in single as well as coupled Rijke tube oscillators. These behaviors include bifurcations, routes to chaos, noise-induced transitions, synchronization, and suppression of oscillations. Various early warning measures have been established to predict thermoacoustic instabilities. Therefore, this review paper consolidates the usefulness of a Rijke tube oscillator in terms of experimentally discovering and modeling different nonlinear phenomena observed in physics; thus, transcending the boundaries between the physics and the engineering communities.

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