AeroacousticsEngineeringAerospace EngineeringLaminar Boundary LayerFluid MechanicsMechanical EngineeringLaminar InterferenceShock StrengthBoundary LayerTurbulent Flow Heat TransferAerodynamicsHeat TransferThermal EngineeringConvective Heat TransferShock CompressionLaminar Boundary Layers
Laminar interference heating correlations have been developed based on recent experimental data obtained with wedge/flat plate models for wide ranges of Reynolds number and shock strength. Two correlation techniques were developed using the Eckert reference method. The peak interference Stanton number was first correlated with shock strength, Reynolds number, and Prandtl number based on flow conditions upstream of the interference region. The second approach was made by correlating peak interference Stanton number with only Reynolds number and Prandtl number based on downstream flow conditions. The laminar boundary layer remains laminar when both Reynolds number and shock strength are low but becomes transitional or turbulent when Reynolds number or/and shock strength are increased.
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Shock wave boundary layer interaction
A. Hadjadj, Jean-Paul Dussauge · Shock Waves · 2009 · 75 citations