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- W2321537874 abstract "A historical review is presented of studies to examine the characteristics of regions of shock wave/boundary layer interaction in hypersonic flow to develop empirical, analytical and numerical prediction methods to describe these flows. We first review studies, starting in the early 1940s, to understand the flow mechanisms associated with boundary layer separation to develop empirical correlations and boundary layer methods to describe the characteristics of separated regions induced by shock wave/boundary layer interaction. We then discuss studies of separated flows over spiked bodies and indented nose shapes conducted to examine novel solutions for thermal protection systems and as test cases for CFD code validation. The early experimental studies to understand the characteristics of laminar interaction regions are reviewed together with predictions based on integral solutions to the boundary layer equation. Recent experimental studies to generate datasets for CFD validation are compared with the most recent Navier-Stokes and DSMC solutions. Studies to examine the characteristics of shock- and wedge-induced turbulent interaction regions are discussed together with correlations of their major characteristics and NavierStokes predictions. Experimental studies of shock/shock boundary layer interaction are reviewed together with prediction methods. This paper concludes with requirements for future research to develop models to describe effects of flowfield and surface chemistry, wall and shear layer transition, compressibility, shock turbulence interaction, and large-scale unsteadiness on models of turbulence to describe attached and separated regions of shock wave/boundary layer interaction." @default.
- W2321537874 created "2016-06-24" @default.
- W2321537874 creator A5048859721 @default.
- W2321537874 date "2006-01-09" @default.
- W2321537874 modified "2023-10-01" @default.
- W2321537874 title "Historical Review of Experimental Studies and Prediction Methods to Describe Laminar and Turbulent Shock Wave/Boundary Layer Interactions in Hypersonic Flows" @default.
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- W2321537874 doi "https://doi.org/10.2514/6.2006-494" @default.
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