论文标题
膨胀不足的超音速撞击喷气的分析分析
Resolvent Analysis of an Under-expanded Planar Supersonic Impinging Jet
论文作者
论文摘要
这项调查旨在评估不同类型的执行器强迫对使用分辨率框架撞击喷气机的膨胀的1.27平面的反馈回路的影响。为此,我们将大型涡流模拟数据库作为真实模型。时间和跨度平均流量被视为全局稳定性的输入,并解决了分析分析,目的是检查固有的不稳定性和输入输出特征。结果表明,固有的不稳定性和一级能量扩增归因于开尔文 - 霍尔莫尔兹(K-H)的不稳定性。此外,从分解分析获得的K-H响应模式与不稳定LES数据的光谱正交分解(SPOD)模式合理地吻合。通过将执行器定位到喷嘴唇和地面板上,通过强迫组件强迫模仿不同的概念执行器来获得对噪声控制的见解。可以观察到,针对局部组件强迫获得的能量扩增与全球分解分析不同,并取决于执行器的类型。这提供了有关执行流动控制的执行器类型,波数和频率的见解。
This investigation aims to assess the effect of different types of actuator forcing on the feedback loop of an under-expanded Mach 1.27 planar impinging jet using a resolvent framework. To this end, we employ a Large Eddy Simulation database as a truth model. The time and spanwise-averaged mean flow is taken as an input to global stability and resolvent analyses with the purpose of examining both the intrinsic instability and input-output characteristics. The results show that the inherent instability and primary energy amplification are attributed to the Kelvin-Helmholtz (K-H) instability. Moreover, the K-H response modes obtained from the resolvent analysis are in reasonable agreement with Spectral Proper Orthogonal Decomposition (SPOD) modes from the unsteady LES data. Insights into noise control are obtained by localizing the actuator forcing to the nozzle lip and the ground plate by imposing component-wise forcing to mimic different notional actuators. It is observed that energy amplification obtained for the localized component-wise forcing is different from the global resolvent analysis and dependent on the type of actuator. This provides insights into the type, wavenumber, and frequency of actuators for active flow control.