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Description and application of a 2D-axisymmetric model for entropy noise in nozzle flows

机译:2D轴对称模型对喷嘴流熵噪声的描述和应用

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Entropy noise corresponds to acoustic fluctuations generated inside gas-turbine engines when temperature (entropy) spots are accelerated by the mean flow. This type of noise currently faces growing interest because of its contribution to global aero-engine noise as well as its impact on combustion instabilities. In the present article, a two-dimensional semi-analytical model is developed to predict entropy noise in nozzle flow. It complements the reference model of Marble and Candel ("Acoustic disturbance from gas non-uniformities convected through a nozzle", J. Sound Vib., 55, pp. 225-243, 1977) and its more recent extensions which remain one-dimensional, by taking the radial variations of the flow into account in the noise generation computation. Validations are performed by comparison with computational aeroacoustics simulations with either entropy or acoustic excitations in a subsonic nozzle. Very good agreement is observed between the numerical simulations and the 2D model for all the frequencies considered. The role of entropy wave distortion in noise generation is demonstrated by comparison with a 1D model which fails to reproduce the simulated results for medium to large frequencies. (C) 2020 Elsevier Ltd. All rights reserved.
机译:当温度(熵)斑点通过平均流量加速时,熵噪声对应于气涡轮机引擎中产生的声波波动。由于其对全球航空发动机噪声的贡献以及对燃烧不稳定的影响,这种类型的噪声目前面临着增长的兴趣。在本文中,开发了二维半分析模型以预测喷嘴流动的熵噪声。它补充了大理石和坎德尔的参考模型(“通过喷嘴的瓦斯非均匀性的声音干扰”,J.声音VIB,55,PP。225-243,1977)及其更近期的延伸率,通过在噪声生成计算中考虑流程的径向变化。通过与亚音速喷嘴中的熵或声学激发进行比较来执行验证。在考虑所有频率的数值模拟和2D模型之间观察到非常好的协议。通过与1D模型的比较,通过比较来证明熵波失真在噪声产生中的作用,该模型不能再现媒体到大频率的模拟结果。 (c)2020 elestvier有限公司保留所有权利。

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