Features of two-phase jets with big concentration of the disperse phase
Matematičeskoe modelirovanie, Tome 24 (2012) no. 1, pp. 129-142.

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The mathematical model of a two-phase turbulent jet including system of the mean equations and model of turbulence G.N. Abramovich's, grounded on a hypothesis about interaction of phases in two-phase turbulent streams is given. Working capacity of this model proves to be true comparison of calculations results with data of L. B. Gavin's with the co-authors experiments spent for a case of big disperse phase concentration in jet. Results of calculations of two-phase jets with mass account concentration of a disperse phase from 0.5 to 40, allowed to reveal feature of twophase jets distribution with big concentration of particles are presented. The obtained data can be used at designing of new installations of the big power and activity range for fire suppression.
Keywords: a two-phase jet, mathematical model, outcomes of calculations
Mots-clés : installation for fire suppression.
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Yu. V. Zuev; I. A. Lepeshinskii; V. A. Reshetnikov; E. A. Istomin. Features of two-phase jets with big concentration of the disperse phase. Matematičeskoe modelirovanie, Tome 24 (2012) no. 1, pp. 129-142. http://geodesic.mathdoc.fr/item/MM_2012_24_1_a8/

[1] Zuev Yu.V., “Vliyanie granichnykh uslovii na kharakteristiki turbulentnosti dvukhfaznykh struinykh techenii s fazovymi prevrascheniyami”, Prikladnaya mekhanika i tekhnicheskaya fizika, 46:3 (2005), 29–40 | Zbl

[2] Zuev Yu.V., Lepeshinskii I.A., “Dvukhfaznaya mnogokomponentnaya turbulentnaya struya s fazovymi perekhodami”, Izv. RAN. Ser. MZhG, 1995, no. 5, 120–138 | MR

[3] Abramovich G.N., Krasheninnikov S.Yu., Sekundov A.N., Turbulentnye techeniya pri vozdeistvii ob'emnykh sil i neavtomodelnosti, Mashinostroenie, M., 1975, 96 pp.

[4] Zuev Yu.V., Lepeshinskii I.A., Sovetov V.A., Chabanov V.A., “Raschet pulsatsionnykh parametrov faz mnogofaznoi mnogokomponentnoi neizotermicheskoi neravnovesnoi strui”, IFZh, XLIX:3 (1985), 503–504

[5] Galitseiskii B.M., Shustrova V.Yu., “Dvukhfaznye turbulentnye struinye techeniya s fazovymi prevrascheniyami”, Matematicheskoe modelirovanie, 17:7 (2005), 79–93 | MR

[6] Abramovich G.N., “O vliyanii primesi tverdykh chastits ili kapel na strukturu turbulentnoi gazovoi strui”, Dokl. AN SSSR, 190:5 (1970), 1052–1055

[7] Paskonov V.M., Polezhaev V.I., Chudov L.A., Chislennoe modelirovanie protsessov teplo- i massoobmena, Nauka, M., 1984, 288 pp. | Zbl

[8] Kostyuk V.V., Zuev Yu.V., Lepeshinskii I.A. i dr., “Issledovanie protsessov mezhfaznogo vzaimodeistviya v mnogofaznykh turbulentnykh struyakh”, Matematicheskoe modelirovanie, 11:4 (1999), 59–69

[9] Shraiber A.A., Gavin L.B., Naumov V.A., Yatsenko V.P., Turbulentnye techeniya gazovzvesi, Nauk. Dumka, Kiev, 1987, 240 pp.

[10] Elghobashi S., Abou-Arab T., Rizk M., Mostafa A., “Prediction of the particle-laden jet with a two-equation turbulence model”, Int. J. Multuphase Flow, 10:6 (1984), 697–710 | DOI

[11] Volkov E.P., Zaichik L.I., Pershukov V.A., Modelirovanie goreniya tverdogo topliva, Nauka, M., 1994, 320 pp.

[12] Mostafa A.A., Mongia H.C., McDonell V.G., Samuelsen G.S., “On the evolution of particle-laden jet flows: a theoratical and experimental study”, AIAA J., 1987, 2181–2197

[13] Modarress D., Tan H., Elghobashi S., “Two-Component LDA Measurement in a Two-Phase Turbulent Jet”, AIAA J., 22:5 (1984), 624-630 | DOI

[14] Gavin L.B., Mulgi A.S., Shor V.V., “Chislennoe i eksperimentalnoe issledovanie neizotermicheskoi turbulentnoi strui s tyazheloi primesyu”, IFZh, 1986, no. 5, 736–742

[15] Abramovich G.N., Girshovich T.A., Krasheninnikov S.Yu., Sekundov A.N., Smirnova I.P., Teoriya turbulentnykh strui, Nauka, M., 1984, 716 pp. | Zbl

[16] Ginevskii A.S., Teoriya turbulentnykh strui i sledov. Integralnye metody rascheta, Mashinostroenie, M., 1969, 400 pp.

[17] Zazhigaev L.S., Kishyan A.A., Romanikov Yu.I., Metody planirovaniya i obrabotki rezultatov fizicheskogo eksperimenta, Atomizdat, M., 1978, 231 pp.