The Riemann problem for isentropic compressible Euler equations with discontinuous flux

Yinzheng Sun, Aifang Qu, Hairong Yuan

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

We consider the singular Riemann problem for the rectilinear isentropic compressible Euler equations with discontinuous flux, more specifically, for pressureless flow on the left and polytropic flow on the right separated by a discontinuity x = x(t). We prove that this problem admits global Radon measure solutions for all kinds of initial data. The over-compressing condition on the discontinuity x = x(t) is not enough to ensure the uniqueness of the solution. However, there is a unique piecewise smooth solution if one proposes a slip condition on the right-side of the curve x = x(t) + 0, in addition to the full adhesion condition on its left-side. As an application, we study a free piston problem with the piston in a tube surrounded initially by uniform pressureless flow and a polytropic gas. In particular, we obtain the existence of a piecewise smooth solution for the motion of the piston between a vacuum and a polytropic gas. This indicates that the singular Riemann problem looks like a control problem in the sense that one could adjust the condition on the discontinuity of the flux to obtain the desired flow field.

Original languageEnglish
Pages (from-to)37-77
Number of pages41
JournalActa Mathematica Scientia
Volume44
Issue number1
DOIs
StatePublished - Jan 2024

Keywords

  • 35L65
  • 35L67
  • 35Q31
  • 35R06
  • 35R35
  • 76N30
  • Radon measure solution
  • Riemann problem
  • compressible Euler equations
  • delta shock
  • discontinuous flux
  • wave interactions

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