English

Radial transonic shock solutions of Euler-Poisson system in convergent nozzles

Analysis of PDEs 2017-03-01 v1 Mathematical Physics Classical Analysis and ODEs math.MP

Abstract

Given constant data of density ρ0\rho_0, velocity u0er-u_0{\bf e}_r, pressure p0p_0 and electric force E0er-E_0{\bf e}_r for supersonic flow at the entrance, and constant pressure pexp_{\rm ex} for subsonic flow at the exit, we prove that Euler-Poisson system admits a unique transonic shock solution in a two dimensional convergent nozzle, provided that u0>0u_0>0, E0>0E_0>0, and that E0E_0 is sufficiently large depending on (ρ0,u0,p0)(\rho_0, u_0, p_0) and the length of the nozzle.

Keywords

Cite

@article{arxiv.1702.08514,
  title  = {Radial transonic shock solutions of Euler-Poisson system in convergent nozzles},
  author = {Myoungjean Bae and Yong Park},
  journal= {arXiv preprint arXiv:1702.08514},
  year   = {2017}
}