Physics-mathematical model of the atmospheric processes in the vicinity of~the mountainous airfield
Matematičeskoe modelirovanie, Tome 27 (2015) no. 3, pp. 20-32.

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A mathematical model of the processes in the vicinity of the mountainous airfield is derived. The single drop behavior in a turbulent flow is considered. The multitude drops kinetics model taking into account evaporation, collisions due to turbulent fluctuations of the carrying gas, coagulation and fragmentation of the drops is given.
Keywords: mountainous airfield, multiphase flow, flight safety.
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V. V. Vyshinsky; K. A. Zudov; M. A. Kudrov; A. L. Stasenko. Physics-mathematical model of the atmospheric processes in the vicinity of~the mountainous airfield. Matematičeskoe modelirovanie, Tome 27 (2015) no. 3, pp. 20-32. http://geodesic.mathdoc.fr/item/MM_2015_27_3_a1/

[1] N. E. Kochin, I. A. Kibel, N. V. Roze, Teoreticheskaia gidromekhanika, v. I, Fizmatlit, M., 1963, 584 pp.

[2] E. Hilsenrath, “High altitude aircraft water vapor measurements”, AIAA/AMS Intern. Conf. on the Environmental Impact of Aerospace Operations in the High Atmosphere (Denver, Colorado, June 11–13, 1973), 7 pp.

[3] V. V. Vyshinskii, A. L. Stasenko, “Modelirovanie struino-vikhrevogo sleda tiazhelogo lainera nad aerodromom”, Matematicheskoe modelirovanie, 15:11 (2003), 69–90

[4] V. V. Vyshinskii, G. G. Sudakov, “Vikhrevoi sled samoleta i voprosy bezopasnosti poletov”, Trudy MFTI, 1:3 (2009), 73–93

[5] L. P. Bykov, “Primenenie modeli pogranichnogo sloia atmosfery nad slozhnoi poverkhnostiu k izucheniiu brizovoi tsirkuliatsii”, Trudy Glavn. geofiz. observatorii, 454 (1981), 97–108

[6] M. A. Kudrov, A. L. Stasenko, “Dinamika vikhrevogo aerozolnogo sleda krylatogo letatelnogo apparata nad slozhnym relefom”, Trudy TsAGI, 2676 (2008), 52–59

[7] L. T. Matveev, Dinamika oblakov, Gidrometeoizdat, L., 1981, 312 pp.

[8] F. R. Menter, “Two-equation eddy-viscosity turbulence models for engineering applications”, AIAA-Journal, 32:8 (1994), 269–289 | DOI

[9] D. C. Wilcox, Turbulence modeling for CFD, 3$^\mathrm{rd}$ edition, DCW Industries, 2006

[10] M. M. Gilinskii, A. L. Stasenko, Sverkhzvukovye gazodispersnye strui, Mashinostroenie, M., 1990, 176 pp.

[11] A. L. Ctasenko, Fizicheskaia mekhanika mnogofaznykh potokov, Izd-vo MFTI, M., 2004, 136 pp.

[12] Naturwissenschaften, 6:17 (1918), 253–263 | DOI

[13] I. V. Derevich, “Stolknoveniia chastits v turbulentnom potoke”, Izvestiia Rossiiskoi AN. Mekh. zhidkosti i gaza, 1996, no. 2, 104–116

[14] L. I. Zaichik, “Otsenka vremeni mezhdu stolknoveniiami dispersnykh chastits v turbulentnom potoke”, Teplofizika vysokikh temperatur, 36:3 (1998), 456–460

[15] I. M. Vasenin, V. A. Arkhipov, V. G. Butov, A. A. Glazunov, V. F. Trofimov, Gazovaia dinamika dvukhfaznykh techenii v soplakh, Izd-vo Tomskogo un-ta, Tomsk, 1986, 262 pp.

[16] L. E. Sternin, A. A. Shraiber, Mnogofaznye techeniia gaza s chastitsami, Mashinostroenie, M., 1994, 320 pp.