论文标题

亚音速喷气机中噪声源的经验模型

An empirical model of noise sources in subsonic jets

论文作者

Karban, Ugur, Bugeat, Benjamin, Towne, Aaron, Lesshafft, Lutz, Agarwal, Anurag, Jordan, Peter

论文摘要

通过声音效率低下,使湍流喷气机发出的噪声建模很困难:只有一小部分近场湍流动能作为声波传播到远场。结果,喷气机模型必须准确地捕获相对效率低下的波动中隐藏的这种较小的高效分量。在本文中,我们从大型仿真数据中确定了这种有效的近场来源,并使用它来告知预测模型。我们的方法使用了分解框架,其中源以非线性波动项的形式充当线性化的Navier-Stokes方程。首先,我们确定的强迫是,当解决方案运算符上作用时,在声场中以0.4射流的方式在声场中产生了前导光谱正交分解模式。其次,通过仅保留超音速相速度的部分来隔离这种强迫的辐射成分。该成分占总强迫能量的0.05%,但产生了大多数声音响应,尤其是在峰值(下游)辐射角。最后,我们提出了一个经验模型,用于确定的效率强迫组件。该模型在其他MACH数字和飞行流条件下进行了测试,并预测了一系列频率,下游角度和飞行条件的噪声。

Modelling the noise emitted by turbulent jets is made difficult by their acoustic inefficiency: only a tiny fraction of the near-field turbulent kinetic energy is propagated to the far field as acoustic waves. As a result, jet-noise models must accurately capture this small, acoustically efficient component hidden among comparatively inefficient fluctuations. In this paper, we identify this acoustically efficient near-field source from large-eddy-simulation data and use it to inform a predictive model. Our approach uses the resolvent framework, in which the source takes the form of nonlinear fluctuation terms that act as a forcing on the linearized Navier-Stokes equations. First, we identify the forcing that, when acted on by the resolvent operator, produces the leading spectral proper orthogonal decomposition modes in the acoustic field for a Mach 0.4 jet. Second, the radiating components of this forcing are isolated by retaining only portions with a supersonic phase speed. This component makes up less than 0.05% of the total forcing energy but generates most of the acoustic response, especially at peak (downstream) radiation angles. Finally, we propose an empirical model for the identified acoustically efficient forcing components. The model is tested at other Mach numbers and flight-stream conditions and predicts noise within 2 dB accuracy for a range of frequencies, downstream angles, and flight conditions.

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