Voir la notice de l'article provenant de la source Math-Net.Ru
[1] Gogrichiani G. V., Shipilin A. V., Perekhodnye protsessy v pnevmaticheskikh sistemakh, Mashinostr., M., 1986
[2] Vukalovich M. P., Rivkin S. L., Aleksandrov A. A., Tablitsy teplofizicheskikh svoistv vody i vodyanogo para, Izd-vo standartov, M., 1969
[3] Lyamaev B. F., Nebolsin G. P., Nelyubov V. A., Statsionarnye i perekhodnye protsessy v slozhnykh gidrosistemakh, Mashinostr., L., 1978
[4] Koldoba A. V., Poveschenko Yu. A., Matus P. P., Chuiko M. M., “Matematicheskoe modelirovanie techeniya zhidkosti v razvetvlennykh gidravlicheskikh sistemakh”, Matem. modelirovanie, 4:9 (1992), 43–54 | MR
[5] Godunov S. K., Zabrodin A. V., Ivanov M. Ya. i dr., Chislennoe reshenie mnogomernykh zadach gazovoi dinamiki, Nauka, M., 1976 | MR | Zbl
[6] Ishizaka K., Ikohagi T., Daiguji H., “A high resolution finite difference scheme for compressible gas-liquid two phase flow”, Proc. 5th Internat. Symp. CFD, Japan Soc. on CFD. V. 1, 1993, 352–357
[7] Kosolapov Yu. S., Protsenko E. Yu., Chirikhin A. V., “Metod rascheta statsionarnykh i nestatsionarnykh dvumernykh techenii spontanno kondensiruyuschegosya para v soplakh”, Zh. vychisl. matem. i matem. fiz., 34:4 (1994), 597–607 | MR | Zbl
[8] Saltakov G. A., Neravnovesnye i nestatsionarnye protsessy v gazodinamike odnofaznykh i dvukhfaznykh sred, Nauka, M., 1979
[9] Idelchik I. E., Spravochnik po gidravlicheskim soprotivleniyam, Gosenergoizdat, M., 1960
[10] Gurevich D. F., Shiryaev V. V., Paikin I. X., Goldshtein I. M., Armatura yadernykh energeticheskikh ustanovok, Atomizdat, M., 1978