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Acoustic response of an injection system to high-frequency transverse acoustic fields

机译:注射系统对高频横向声场的声反应

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The acoustic coupling between the injection system and the acoustic fluctuations in liquid rocket engine combustion chambers is an important issue in the understanding of the thermo-acoustic instability phenomenon. This paper presents the results of a wide-ranging parametric investigation of the acoustic response of a two-phase injection system submitted to a forced high-amplitude transverse acoustic field. Two domes, one for the gas and one for the liquid, were expressly designed to feed three identical coaxial injectors. The internal mode shapes of the domes were characterized by measuring pressure signals at different locations in the domes. Experimental mode shapes showed good agreement with those predicted by numerical simulations. Acoustic pressure amplitudes up to 23% of those induced in the main cavity can be found in both the gas and liquid domes. The response efficiency in a dome depends on the position of the injectors' exit in the acoustic field.
机译:注射系统和液体火箭发动机燃烧室中的声波之间的声学耦合是理解热声不稳定现象的重要问题。 本文介绍了对提交给强制高幅度横向声场的两相注射系统的声反应的广泛参数研究的结果。 两个圆顶,一个用于气体和一个用于液体的圆顶,明确地设计用于喂养三个相同的同轴注射器。 圆顶的内部模式形状是通过测量圆顶中不同位置的压力信号来表征。 实验模式形状与通过数值模拟预测的那些吻合良好。 在气体和液体圆顶中,可以在主腔中诱导的声压幅度的高达23%的声压幅度。 圆顶上的响应效率取决于声场中的喷射器出口的位置。

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