NASA NTRS ยท 19920016036
An Engineering Method for Interactive Inviscid-Boundary Layers in Three-Dimensional Hypersonic Flows
Abstract
An engineering method has been developed that couples an approximate three dimensional inviscid technique with the axisymmetric analog and a set of approximate convective heating equations. The displacement effect on the boundary layer on the outer inviscid flow is calculated and included as a boundary condition in the inviscid technique. This accounts for the viscous interaction present at lower Reynolds numbers. The method is applied to blunted axisymmetric and three dimensional elliptic cones at angle of attack for the laminar hypersonic flow of a perfect gas. The method is applied to turbulent and equilibrium-air conditions. The present technique predicts surface heating rates, pressures, and shock shapes that compare favorably with experimental (ground-test and flight) data and numerical solutions of the Navier-Stokes and viscous shock-layer equations. In addition, the inclusion of viscous interaction significantly improves results obtained at lower Reynolds numbers. The new technique represents a major improvement over current engineering aerothermal methods with only a modest increase in computational effort.
Keep this discovery
Explore connections, maps & timelines
Riley, Christopher J.. 1992-01-01. An Engineering Method for Interactive Inviscid-Boundary Layers in Three-Dimensional Hypersonic Flows. https://ntrs.nasa.gov/citations/19920016036
Cite the original work for its findings. Save a collection to share your selection of sources.