Delta wave and vacuum state for generalized Chaplygin gas dynamics system as pressure vanishes
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Publication:475000
DOI10.1016/j.nonrwa.2014.08.007zbMath1308.35193OpenAlexW2004421616MaRDI QIDQ475000
Wan-cheng Sheng, Gan Yin, Guojuan Wang
Publication date: 25 November 2014
Published in: Nonlinear Analysis. Real World Applications (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.nonrwa.2014.08.007
Riemann problemvacuum stategeneralized Chaplygin gasdelta wavetransport equations in zero-pressure flow
Gas dynamics (general theory) (76N15) Kinetic theory of gases in time-dependent statistical mechanics (82C40) Euler equations (35Q31)
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Cites Work
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- The two-dimensional Riemann problem for isentropic Chaplygin gas dynamic system
- Delta shocks and vacuum states in vanishing pressure limits of solutions to the relativistic Euler equations
- Concentration and cavitation in the vanishing pressure limit of solutions to the Euler equations for nonisentropic fluids
- The Riemann problem for one-dimensional generalized Chaplygin gas dynamics
- The Riemann problem for the transportation equations in gas dynamics
- Formation of $\delta$-Shocks and Vacuum States in the Vanishing Pressure Limit of Solutions to the Euler Equations for Isentropic Fluids
- Note on the compressible Euler equations with zero temperature
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