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September 19, 2025Journal of Fluid Mechanics1 citationsOpen Access

Rotor–stator interactions in a model compressor stage: an unsteady dual analysis

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AGAnton GlazkovMPMiguel Fosas de PandoPSPeter J. Schmid

Key Points

  • The analysis shows how rotor-stator interactions can significantly influence flow instabilities and performance.
  • Detailed simulations identify specific instabilities and their acoustic or hydrodynamic triggers within the compressor stage.
  • An innovative dual analysis method tracks flow components and their interactions, providing insights into compressor efficiency.
  • The findings support advanced cause-and-effect analysis, necessitating further research for practical flow control applications.

Abstract

Rotor–stator interactions in turbomachines are characterised by a complex interplay of hydrodynamic instabilities, acoustic pressure waves and receptivity mechanisms, as well as the collision of coherent structures with the blade geometry. An unsteady dual analysis of self-excited instabilities and flow interactions, exemplified by a simple model compressor stage under subsonic conditions, is proposed and presented. Using a low-dissipation sliding-plane implementation, instability-resolving nonlinear-adjoint looping simulations provide detailed sensitivity information that allows for the dissection of the full flow into sub-components linked to distinct flow phenomena. This sensitivity information further links observed flow behaviour to its hydrodynamic or acoustic origin, thereby laying the foundation for a cause-and-effect analysis and for flow control.

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Cite This Study

Glazkov et al. (2025) studied this question.

synapsesocial.com/papers/68d466b531b076d99fa655aahttps://doi.org/10.1017/jfm.2025.10338
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