The effect of cant angle on the sound production of mutually inclined rectangular supersonic jets

Daniel Edgington-Mitchell, Joel L. Weightman, Petronio Nogueira
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Abstract

Rectangular nozzle geometries offer a number of benefits over their axisymmetric counterparts, particularly for military aviation. Among these benefits are altered thermal and noise signatures, ease of airframe integration, and simpler thrust vectoring. Many next-generation tactical aircraft concepts employ two rectangular jets in close proximity. These jets can couple together, producing high-amplitude acoustic tones that are deleterious to aircraft structure. In this work, we take a combined experimental and theoretical approach to examine the effect of cant angle (i.e., mutual inclination angle) on the jets' proclivity to couple. We employ modal decomposition of flow visualization data alongside resonance predictions based on linear stability theory to explore the degree to which mutual inclination can suppress resonance.
倾斜角对相互倾斜的矩形超音速喷流发声的影响
与轴对称喷嘴相比,矩形喷嘴具有许多优点,特别是在军用航空领域。这些优点包括热信号和噪声信号的改变、机身集成的简易性以及推力矢量的简易性。许多下一代战术飞机概念都采用两个相邻的矩形喷气机。这些喷气机可以耦合在一起,产生对飞机结构有害的高振幅声波。在这项工作中,我们采用实验和理论相结合的方法来研究倾斜角(即相互倾角)对喷流耦合倾向的影响。我们采用流动可视化数据的模态分解以及基于线性稳定性理论的共振预测,来探索互倾角对共振的抑制程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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