AIAA Journal · 1976 · 89 citations · 15 references
AeroacousticsEngineeringFluid MechanicsMechanical EngineeringNavier-stokes EquationsComputational MechanicsUnsteady FlowCompressible FlowNumerical ComputationNumerical SimulationShock CompressionHydrodynamic StabilityIncompressible FlowFlow PhysicMultiphase FlowComplete SetAerospace EngineeringAerodynamicsBow ShockImpinging Shock
Two-dimensional viscous blunt body flows with an impinging shock have been computed using a time-dependent finite-difference method which solves the complete set of Navier-Stokes equations for a compressible flow. For low Reynolds number flows, the entire flow field, including the bow shock and impinging shock, has been captured in the computation. For higher Reynolds number flows, the bow shock is treated as a discontinuity across which the Rankine-Hugoniot equations are applied, while the boundary layer and interaction regions are captured as before. Using this latter shock-fitting approach, a Type III shock interaction flow field has been computed with flow conditions corresponding to the space shuttle orbiter freestream conditions at 61 km (200,000 ft).
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The Effect of Viscosity in Hypervelocity Impact Cratering
Robert MacCormack · Journal of Spacecraft and Rockets · 2003 · 1.1K citations
Missile, Space Vehicle, Engineering +26
The effect of viscosity in hypervelocity impact cratering
Robert MacCormack · 1969 · 941 citations