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Bi-global stability of supersonic backward-facing step flow
Kaikai Yu
,
Jiaao Hao
,
Chih Yung Wen
, Jinglei Xu
Department of Aeronautical and Aviation Engineering
The Hong Kong Polytechnic University
Research output
:
Journal article publication
›
Journal article
›
Academic research
›
peer-review
10
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Citations (Scopus)
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Keyphrases
Unstable Modes
100%
Global Stability
100%
Backward-facing Step Flow
100%
Direct numerical Simulation
66%
Free Stream
66%
Separation Vortex
66%
Global Stability Analysis
66%
Streamwise Streaks
66%
Stationary Mode
66%
Three-dimensional (3D)
33%
Two Dimensional
33%
Reynolds number
33%
Quasi-steady
33%
Flat Plate
33%
Growth Rate
33%
Boundary Layer
33%
Steady Stage
33%
Mach number
33%
External Disturbances
33%
Flow Separation
33%
Plate Length
33%
Oscillatory Modes
33%
Simulation Stability
33%
Shock-induced
33%
Separated Flows
33%
Global Instability
33%
Low-frequency Unsteadiness
33%
Step Height
33%
Separation Mechanism
33%
Stream Condition
33%
Linear Growth
33%
Secondary Separation
33%
Small Bubbles
33%
Conjugate Modes
33%
Engineering
Facing Step
100%
Global Stability
100%
Step Flow
100%
Streamwise
66%
Stability Analysis
66%
Direct Numerical Simulation
66%
Two Dimensional
33%
External Disturbance
33%
Reynolds' Number
33%
Length (L)
33%
Flow Separation
33%
Separation Mechanism
33%
Boundary Layer
33%
Free-Stream Condition
33%
Free-Stream Mach Number
33%
Flat Plate
33%
Separated Flow
33%