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Injector-Driven Combustion Instabilities in a Hydrogen/Oxygen Rocket Combustor

机译:氢气/氧气火箭燃烧室中喷油器驱动的燃烧不稳定性

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摘要

Self-excited combustion instabilities of the first tangential mode have been found in a research combustor operated with the cryogenic propellant combination of hydrogen/oxygen. In a series of consecutive test campaigns, the influence of operating conditions on these self-excited combustion instabilities was examined. This included a variation of the combustion chamber pressure, the mixture ratio, and the propellant temperatures. It has been shown how these operating parameters influence the resonance frequencies of the combustion chamber. The analysis of the influence of operating conditions on the oscillation amplitude of the first tangential mode indicated that the instability occurred when the frequency of the first tangential mode of the combustion chamber was shifted into the frequency of the second longitudinal mode of the liquid oxygen injector. With a variation of the injector length, and therefore its longitudinal resonance frequencies, this hypothesis has been tested. Based on the experimental observations it was concluded that the observed instabilities were a result of the interaction of combustion chamber resonance frequencies with injector resonance frequencies. The heat release rate oscillation was shown to be a result of the injector acoustics and not of the combustion chamber pressure oscillations.
机译:在以氢/氧的低温推进剂组合运行的研究燃烧器中,发现了第一切向模式的自激燃烧不稳定性。在一系列连续的测试中,研究了工况对这些自激燃烧不稳定性的影响。这包括燃烧室压力,混合比和推进剂温度的变化。已经显示出这些操作参数如何影响燃烧室的共振频率。对工作条件对第一切向模式的振荡幅度的影响的分析表明,当燃烧室的第一切向模式的频率转换为液氧喷射器的第二纵向模式的频率时,会发生不稳定性。随着喷射器长度的变化,因此其纵向共振频率发生了变化,这一假设得到了检验。基于实验观察,可以得出结论,观察到的不稳定性是燃烧室共振频率与喷射器共振频率相互作用的结果。放热率振荡被证明是喷油器声学的结果,而不是燃烧室压力振荡的结果。

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  • 来源
    《Journal of propulsion and power》 |2016年第3期|560-573|共14页
  • 作者单位

    DLR, German Aerospace Center, 74239 Hardthausen, Germany,RWTH Aachen University, 52062 Aachen, Germany;

    DLR, German Aerospace Center, 74239 Hardthausen, Germany;

    DLR, German Aerospace Center, 74239 Hardthausen, Germany;

    DLR, German Aerospace Center, 74239 Hardthausen, Germany;

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