Assessment of thermodynamic models for dense gas dynamics
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Publication:3554677
DOI10.1063/1.1786791zbMath1187.76193OpenAlexW2049931371MaRDI QIDQ3554677
Brian Argrow, Alberto Guardone, Luigi Vigevano
Publication date: 22 April 2010
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1063/1.1786791
thermodynamicssupersonic flowpipe flowMach numberflow simulationnumerical analysisshock tubesrarefied fluid dynamics
Related Items (13)
Siloxanes: A new class of candidate Bethe-Zel’dovich-Thompson fluids ⋮ Transonic flows of dense gases over finite wings ⋮ Numerical investigation of dense-gas effects in turbomachinery ⋮ Insights into the turbulent flow of dense gases through high-fidelity simulations ⋮ Optimal airfoil shapes for viscous transonic flows of Bethe-Zel'dovich-Thompson fluids ⋮ The admissibility domain of rarefaction shock waves in the near-critical vapour–liquid equilibrium region of pure typical fluids ⋮ Robust optimization of dense gas flows under uncertain operating conditions ⋮ Nonclassical gasdynamic region of selected fluorocarbons ⋮ Oblique waves in steady supersonic flows of Bethe–Zel’dovich–Thompson fluids ⋮ Analysis of turbulence characteristics in a temporal dense gas compressible mixing layer using direct numerical simulation ⋮ Dense-gas effects on compressible boundary-layer stability ⋮ Exact solutions to non-classical steady nozzle flows of Bethe–Zel’dovich–Thompson fluids ⋮ Weak shock reflection in channel flows for dense gases
Cites Work
- Theory for producing a single-phase rarefaction shock wave in a shock tube
- On the suppression of shock-induced separation in Bethe–Zel'dovich–Thompson fluids
- The Riemann problem for fluid flow of real materials
- A Fundamental Derivative in Gasdynamics
- Negative shock waves
- Roe linearization for the van der Waals gas.
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