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Systems Characterization of Combustor Instabilities With Controls Design Emphasis

机译:具有控制设计重点的燃烧器不稳定性的系统表征

摘要

This effort performed test data analysis in order to characterize the general behavior of combustor instabilities with emphasis on controls design. The analysis is performed on data obtained from two configurations of a laboratory combustor rig and from a developmental aero-engine combustor. The study has characterized several dynamic behaviors associated with combustor instabilities. These are: frequency and phase randomness, amplitude modulations, net random phase walks, random noise, exponential growth and intra-harmonic couplings. Finally, the very cause of combustor instabilities was explored and it could be attributed to a more general source-load type impedance interaction that includes the thermo-acoustic coupling. Performing these characterizations on different combustors allows for more accurate identification of the cause of these phenomena and their effect on instability.
机译:这项工作进行了测试数据分析,以表征燃烧室不稳定性的一般行为,并着重于控制设计。该分析是根据从实验室燃烧器装置的两种配置和从发展中的航空发动机燃烧器获得的数据进行的。这项研究的特征是与燃烧室不稳定性相关的几种动态行为。它们是:频率和相位随机性,幅度调制,净随机相移,随机噪声,指数增长和内部谐波耦合。最后,探究了燃烧室不稳定性的根本原因,这可以归因于更普遍的源-负载型阻抗相互作用,其中包括热声耦合。在不同的燃烧器上执行这些表征可以更准确地识别这些现象的原因及其对不稳定性的影响。

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    Kopasakis George;

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  • 年度 2004
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