Separation of gas mixtures in free molecular flow through a vibrating membrane
Vestnik Moskovskogo universiteta. Matematika, mehanika, no. 5 (2015), pp. 64-67 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

A free molecular gas flow through a membrane vibrating in its plane is studied. Optimal vibration parameters are determined for the most efficient separation of gases with different molecular masses.
@article{VMUMM_2015_5_a14,
     author = {V. L. Kovalev and V. V. Kosyanchuk and A. N. Yakunchikov},
     title = {Separation of gas mixtures in free molecular flow through a vibrating membrane},
     journal = {Vestnik Moskovskogo universiteta. Matematika, mehanika},
     pages = {64--67},
     year = {2015},
     number = {5},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/VMUMM_2015_5_a14/}
}
TY  - JOUR
AU  - V. L. Kovalev
AU  - V. V. Kosyanchuk
AU  - A. N. Yakunchikov
TI  - Separation of gas mixtures in free molecular flow through a vibrating membrane
JO  - Vestnik Moskovskogo universiteta. Matematika, mehanika
PY  - 2015
SP  - 64
EP  - 67
IS  - 5
UR  - http://geodesic.mathdoc.fr/item/VMUMM_2015_5_a14/
LA  - ru
ID  - VMUMM_2015_5_a14
ER  - 
%0 Journal Article
%A V. L. Kovalev
%A V. V. Kosyanchuk
%A A. N. Yakunchikov
%T Separation of gas mixtures in free molecular flow through a vibrating membrane
%J Vestnik Moskovskogo universiteta. Matematika, mehanika
%D 2015
%P 64-67
%N 5
%U http://geodesic.mathdoc.fr/item/VMUMM_2015_5_a14/
%G ru
%F VMUMM_2015_5_a14
V. L. Kovalev; V. V. Kosyanchuk; A. N. Yakunchikov. Separation of gas mixtures in free molecular flow through a vibrating membrane. Vestnik Moskovskogo universiteta. Matematika, mehanika, no. 5 (2015), pp. 64-67. http://geodesic.mathdoc.fr/item/VMUMM_2015_5_a14/

[1] Kovalëv V.L., Kosyanchuk V.V., Yakunchikov A.N., “Svobodnomolekulyarnoe techenie gaza cherez koleblyuschuyusya membranu”, Izv. RAN. Mekhan. zhidkosti i gaza, 2014, no. 4, 119–124 | Zbl

[2] Yamaguchi H., Shobatake K., Niimi T., “Molecular dynamic study on rare gas-graphite (0001) surface scattering”, Rarefied Gas Dynam., 26th Int. Symp. (St. Petersburg, 2008), AIP Conf. Proc., St. Petersburg, 2008, 647–652 | DOI

[3] Yamamoto K., Takeuchi H., Hyakutake T., “Scattering properties and scattering kernel based on the molecular dynamics analysis of gas–wall interaction”, Phys. Fluids, 19 (2007), 87–102 | DOI

[4] Kovalëv V.L., Yakunchikov A.N., “Koeffitsienty akkomodatsii dlya molekulyarnogo vodoroda na poverkhnosti grafita”, Izv. RAN. Mekhan. zhidkosti i gaza, 2010, no. 6, 158–165 | Zbl

[5] Sharipov F., “Application of the Cercignani–Lampis scattering kernel to calculations of rarefied gas flows. I. Plane flow between two parallel plates”, Eur. J. Mech. B/Fluids, 21 (2002), 113–123 | DOI | MR | Zbl

[6] Kovalev V.L., Yakunchikov A.N., “Analiz modelei rasseyaniya na osnove rezultatov traektornykh raschetov”, Izv. RAN. Mekhan. zhidkosti i gaza, 2012, no. 5, 80–87 | MR | Zbl

[7] Knudsen M., The kinetic theory of gases: Some modern aspects, Methuen Co., L., 1934 | Zbl

[8] Shidlovskii V. P., Vvedenie v dinamiku razrezhennogo gaza, Nauka, M., 1965