Direct numerical simulations of K-type boundary-layer transition for two supercritical-fluid wall-temperature regimes show delayed, less violent breakdown when the wall exceeds the pseudo-boiling temperature.
C., Bugeat, B., Peeters J
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Direct Numerical Simulations of K-type transition in a flat-plate boundary layer with supercritical fluids
Direct numerical simulations of K-type boundary-layer transition for two supercritical-fluid wall-temperature regimes show delayed, less violent breakdown when the wall exceeds the pseudo-boiling temperature.