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Visualization of Shear Layer Dynamics in a Transversely Forced Flow and Flame

机译:横向强迫流动和火焰中剪切层动力学的可视化

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This study addresses the response of a swirling annular jet flow and flame to transverse acoustic excitation in order to better describe key velocity-coupled processes during transverse combustion instabilities in lean, premixed flames. In particular, visualization and velocimetry techniques provide information about the effects of acoustic excitation on unsteady vortex development in the shear layers. Without acoustic forcing, the shear layers roll up into small vortices, driven by the Kelvin-Helmholtz instability, that convert downstream and grow. In the presence of high-amplitude acoustic forcing, as would be present during a combustion instability, the acoustic oscillations drive shear layer vortices to undergo a strong rollup event Smoke visualization provides visual evidence of the rollup, while particle image velocimetry measurements show the development and trajectory of this large structure. Finally, planar laser-induced fluorescence of OH shows how the large coherent structure causes flame wrinkling at the base of the flame. The vortex rollup, responding at the frequency of acoustic forcing, creates large-scale wrinkles on the flame and can be the main driver of flame response during combustion instability.
机译:这项研究解决了回旋环形射流和火焰对横向声激发的响应,以便更好地描述稀薄,预混火焰中横向燃烧不稳定性期间的关键速度耦合过程。特别是,可视化和测速技术提供了有关声激发对剪切层中不稳定涡流发展的影响的信息。在没有声强迫的情况下,在开尔文-亥姆霍兹不稳定性的驱动下,剪切层会卷成小漩涡,并向下游转化并生长。在存在高振幅声强迫的情况下(如在燃烧不稳定期间会出现这种情况),声振荡会驱动剪切层涡旋发生强烈的聚集事件。烟雾可视化提供了聚集的视觉证据,而粒子图像测速仪的测量则表明了聚集和发展。这种大结构的轨迹。最后,平面激光诱导的OH荧光表明大的相干结构如何导致火焰底部的火焰起皱。响应于声强迫频率的涡旋累积会在火焰上产生大范围的皱纹,并且可能是燃烧不稳定期间火焰响应的主要驱动力。

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