|
|
|
|
References
|
|
| |
| 1. |
O. Igra, J. Falcovitz, G. Jourdan, “Review of methods to attenuate shock/blast waves”, Prog. Aerosp. Sci, 58 (2013), 1–35 |
| 2. |
B. Kichatov, A. Korshunov, A. Kiverin, E. Son, “Foamed emulsion Fuel on the base of water-saturated oils”, Fuel, 203 (2017), 261–268 |
| 3. |
S. Sembian, M. Liverts, N. Apazidis, “Attenuation of strong external blast by foam barriers”, Phys. Fluids, 28:9 (2016), 096105 |
| 4. |
S. S. Ramamurthi K. Prasanna Kumar, B. S. Patnaik, “Numerical study of a foam-shock trap based blast mitigation strategy”, Phys. Fluids, 30:8 (2018), 086102 |
| 5. |
Baer M.R, J. W. Nunziato, “A two-phase mixture theory for the deflagration-to-detonation transition in reactive granular materials”, Internat. J. Multiphase Flow, 12:6 (1986), 861–889 |
| 6. |
P. A. Chuprov, Ya. E. Poroshina, P. S. Utkin, “Chislennoe issledovanie deflagratsii porokha v ramkakh modeli Baera Nuntsiato”, Gorenie i vzryv, 13:3 (2020), 91–106 |
| 7. |
P. Chuprov, P. Utkin, S. Fortova, “Numerical simulation of a high-speed impact of metal plates using a three-fluid model”, Metals, 11:8 (2021), 1233 |
| 8. |
P. S. Utkin, “Matematicheskoe modelirovanie vzaimodeistviya udarnoi volny s plotnoi zasypkoi chastits v ramkakh dvukhzhidkostnogo podkhoda”, Khim. fizika, 36:11 (2017), 61–71 |
| 9. |
M. R. Baer, “A numerical study of shock wave reflection on low density foam”, Shock Waves, 2 (1992), 121–124 |
| 10. |
R. Saurel, N. Favrie, F. Petitpas, M. H. Lallemand, S. L. Gavrilyuk, “Modelling dynamic and irreversible powder compaction”, J. Fluid Mech, 664 (2010), 348–396 |
| 11. |
Y. E. Poroshyna, P. S. Utkin, “Numerical simulation of a normally incident shock wave-dense particles layer interaction using the Godunov solver for the Baer-Nunziato equations”, Internat. J. Multiphase Flow, 142 (2021), 103718 |
| 12. |
R. Saurel, R. Abrall, “A multiphase Godunov method for compressible multifluid and multiphase flows”, J. Comput. Phys, 150:2 (1999), 425–467 |
| 13. |
W. E. Warren, A. M. Kraynik, “The nonlinear elastic behavior of open-cell foams”, J. Appl. Mech, 58:2 (1991), 376 |
| 14. |
Rogue et al, “Experimental and numerical investigation of the shock-induced fluidization of a particles bed”, Shock Waves, 8:2 (1998), 29–45 |