解决方案
带宽遏流
机械
物理
不稳定性
轴流压缩机
气体压缩机
摄动(天文学)
失速(流体力学)
经典力学
热的
WKB近似
流量(数学)
正常模式
阻塞流
控制理论(社会学)
无粘流
势流
流动分离
不可压缩流
作者
Jiahao Hu,Ruize Xu,Dengke Xu,Ming Zhang,Xu Dong,Dakun Sun,Xiaofeng Sun
出处
期刊:AIAA Journal
[American Institute of Aeronautics and Astronautics]
日期:2025-11-12
卷期号:: 1-18
摘要
The hydrodynamic, acoustic, and thermal mode interactions affect flow instability in turbomachinery. The disturbance field is decomposed into component modes, and their interactions during throttling are analyzed. A theoretical model integrating resolvent analysis and momentum potential theory is established. Resolvent analysis in an axial compressor is validated via rotating inlet distortion experiments and spectral proper orthogonal decomposition. Resolvent analysis captures the flow structure and establishes links between them and resolvent modes. Amplified perturbation structures trigger stall during throttling. Resolvent analysis identifies the most sensitive forcing frequencies along the throttling process. Response modes are divided into hydrodynamic, acoustic, and thermal components based on these frequencies. To clarify the perturbation energy transport mechanisms, the properties and dynamic interactions of component modes in the decomposed fields are analyzed. This reveals that hydrodynamic–thermal interaction is the dominant contributor to total fluctuating enthalpy. Additionally, interactions between hydrodynamic/thermal components and Coriolis acceleration are key drivers of stall inception, especially in amplifying flow instabilities at the tip region.
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