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Numerical Analysis of Shock Wave Diffraction

Authors :
Xiao Hong
A. Chaudhuri
Gustaaf Jacobs
Source :
31st International Symposium on Shock Waves 1 ISBN: 9783319910192
Publication Year :
2019
Publisher :
Springer Publishing Company, 2019.

Abstract

This work reports analysis of complex shock wave diffraction and longtime behavior of shock-vortex dynamics over splitter geometry encountered in both external and internal compressible flows. The simulation resolved the experimental findings of literature, and the insight of the flow topology is being presented with the probability density functions (PDFs) of various contributing terms of enstrophy transport equation and the invariants of the velocity gradient tensor. We use an artificial viscosity (AV)-based explicit discontinuous spectral element method (DSEM)-based compressible flow solver for this purpose. The numerical scheme utilizes entropy generation-based artificial viscosity and thermal conductivity to simulate the conservative form of the governing compressible flow equations. A shock sensor-based switch is used to reduce the addition of AV coefficients in rotation-dominated regions. This work used the resource of Extreme Science and Engineering Discovery Environment (XSEDE) [17] supported by the National Science Foundation of USA, Grant number ACI1053575

Details

Language :
English
ISBN :
978-3-319-91019-2
ISBNs :
9783319910192
Database :
OpenAIRE
Journal :
31st International Symposium on Shock Waves 1 ISBN: 9783319910192
Accession number :
edsair.doi.dedup.....286ee6a4053cac6f5a5a0802b4d2e2d3