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Combustion Instability-Coupling Mechanisms Between Liquid Oxygen/Methane Spray Flames and Acoustics

机译:液氧/甲烷喷雾火焰与声学之间的燃烧不稳定性耦合机理

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摘要

The effects of acoustic perturbations on a liquid oxygen/methane spray flame have been experimentally investigated. The main objective was to learn more about the interaction between combustion-chamber processes and an externally enforced acoustic field. With an in-depth analysis of dynamic-pressure signals and optical diagnostics of the flame, several results have been obtained and are presented in this paper. It was possible to spatially resolve the location in the combustion chamber where the response of the flame to the acoustic wave was highest By reconstructing the acoustic pressure and velocity fields, and comparing these with excited hydroxyl radical, chemiluminescence (OH~*) images of the flame, it could be shown that the flame predominantly reacts on the velocity fluctuations and not on the pressure fluctuations. All results were consistent and allowed for the conclusion that the coupling mechanism between combustion and acoustics in this experimental setup is predominantly velocity driven.
机译:实验研究了声学扰动对液氧/甲烷喷雾火焰的影响。主要目的是了解有关燃烧室过程与外部强制声场之间相互作用的更多信息。通过对动压信号的深入分析和火焰的光学诊断,已经获得了一些结果,并在本文中进行了介绍。通过重构声压和速度场,并将其与激发的羟基自由基,化学发光(OH〜*)图像进行比较,可以在空间上解析火焰对声波的响应最高的燃烧室位置。可以看出,火焰主要对速度波动起反应,而不对压力波动起反应。所有结果都是一致的,并可以得出这样的结论:在该实验装置中,燃烧与声学之间的耦合机制主要是速度驱动的。

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  • 来源
    《Journal of propulsion and power》 |2012年第6期|1339-1350|共12页
  • 作者单位

    DLR, German Aerospace Center, Lampoldshausen, Hardthausen 74239, Germany;

    DLR, German Aerospace Center, Lampoldshausen, Hardthausen 74239, Germany;

    DLR, German Aerospace Center, Lampoldshausen, Hardthausen 74239, Germany;

    DLR, German Aerospace Center, Lampoldshausen, Hardthausen 74239, Germany;

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