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September 18, 2025Journal of Fluid Mechanics7 citationsOpen Access

Instabilities in shock-wave–boundary-layer interactions at Mach 6

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ZSZiming SongJHJiaao Hao

Key Points

  • Global stability analysis reveals boundary characteristics and unstable modes fundamental to high-speed flow.
  • Resolvent analysis categorizes flow cases, with optimal responses shifting from first modes to streaks induced by Görtler instability.
  • Minimal growth from the second mode and the presence of Mack’s modes are observed in separation bubbles at high speeds.
  • Linear stability analysis further supports the observed amplification mechanisms of oblique modes in shock interactions.

Abstract

The flow instabilities in shock-wave–boundary-layer interactions at Mach 6 are comprehensively investigated through compression corner and incident shock cases. The boundary of global stability and the characteristics of globally unstable modes are determined by global stability analysis. In resolvent analysis, cases are categorized into flat plate, no separation, small separation and large separation flows. The optimal response shifts from the first mode in the flat plate case to streaks after the amplification in the interaction region. The amplification of streaks and the first mode (oblique mode) are both attributed to the Görtler instability. Meanwhile, the second mode exhibits minimal growth and higher Mack’s modes appear within the separation bubble. Rounded corner case and linear stability analysis are utilized to further validate the amplification mechanism of the oblique mode.

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Cite This Study

Song et al. (2025) studied this question.

synapsesocial.com/papers/68d462b631b076d99fa61b8dhttps://doi.org/10.1017/jfm.2025.10597
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