3-D axisymmetric transonic shock solutions of the full Euler system in divergent nozzles
Analysis of PDEs
2021-02-26 v3 Mathematical Physics
math.MP
Abstract
We establish the stability of 3-D axisymmetric transonic shock solutions of the steady full Euler system in divergent nozzles under small perturbations of an incoming radial supersonic flow and a constant pressure at the exit of the nozzles. To study 3-D axisymmetric transonic shock solutions of the full Euler system, we use a stream function formulation of the full Euler system for a 3-D axisymmetric flow. We resolve the singularity issue arising in stream function formulations of the full Euler system for a 3-D axisymmetric flow. We develop a new scheme to determine a shock location of a transonic shock solution of the steady full Euler system based on the stream function formulation.
Keywords
Cite
@article{arxiv.1908.04945,
title = {3-D axisymmetric transonic shock solutions of the full Euler system in divergent nozzles},
author = {Yong Park},
journal= {arXiv preprint arXiv:1908.04945},
year = {2021}
}