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Comparison of macro- and microscopic solutions of the Riemann problem II. Two-phase shock tube

, , , , and . Journal of computational physics, (2021)
DOI: 10.1016/j.jcp.2020.110027

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Comparison of macro- and microscopic solutions of the Riemann problem II. Two-phase shock tube, , , , and . Journal of computational physics, (2021)On the Riemann problem and the Navier-Stokes-Korteweg model for compressible multiphase flows. Universität Stuttgart, München, Dissertation, (2020)On The Use of Tabulated Equations of State for Multi-Phase Simulations in the Homogeneous Equilibrium Limit, , , , and . Shock Waves, 29 (5): 769-793 (2019)Comparison of macro- and microscopic solutions of the Riemann problem I. Supercritical shock tube and expansion into vacuum, , , and . Journal of Computational Physics, (2020)Single vapour bubble growth under flash boiling conditions using a modified HLLC Riemann solver, , , and . International Journal of Multiphase Flow, (2019)A parabolic relaxation model for the Navier-Stokes-Korteweg equations, , , and . Journal of computational physics, (2020)Numerical second law analysis around a turbine guide vane using a two-equation turbulence model and comparison with experiments, , , , and . International journal of thermal sciences, (2017)Data from: Comparison of Macro- and Microscopic Solutions of the Riemann Problem II. Two-Phase Shock Tube, , , , and . Dataset, (2022)Related to: Timon Hitz, Steven Jöns, Matthias Heinen, Jadran Vrabec, Claus-Dieter Munz,"Comparison of macro- and microscopic solutions of the Riemann problem II. Two-phase shock tube", Journal of Computational Physics 429 (2021), 110027. doi: 10.1016/j.jcp.2020.110027.