Previous Page  15 / 16 Next Page
Information
Show Menu
Previous Page 15 / 16 Next Page
Page Background

Н.В. Быков, В.В. Зеленцов

142

ISSN 0236-3941. Вестник МГТУ им. Н.Э. Баумана. Сер. Машиностроение. 2016. № 4

[12] Bykov N.V., Vladimirov V.S., Zelentsov V.V. Numerical simulation of cylindrical-

conical barrels’ interior ballistics with plastic projectile body.

Nauka i obrazovanie

.

MGTU

im. N.E. Baumana

[Science & Education of the Bauman MSTU. Electronic Journal], 2012,

no. 3. Available at:

http://technomag.bmstu.ru/en/doc/310721.html

[13] Bykov N.V., Zelentsov V.V., Karneychik A.S. Effect of the length of the tapered section on

the ballistic characteristics of cylindroconical barrels with plastic shells.

Oboronnaya tekhnika

[Defense technology], 2012, no. 8/9, pp. 21–26 (in Russ.).

[14] Bykov N.V., Zelentsov V.V., Karneychik A.S. Bicaliber ballistic gun mount with the de-

formable piston.

Jelektr. nauchno-tekh. izd. «Inzhenernyy zhurnal: nauka i innovacii»

[El.

Sci.-Tech. Publ. "Eng. J.: Science and Innovation"], 2013, iss. 9.

DOI:

10.18698/2308-6033-2013-9-945 Available at:

http://engjournal.ru/eng/catalog/machin/

rocket/945.html

[15] Bykov N.V., Nesterenko E.A. Analysis and comparison of computer codes for solving the

problem of internal ballistics on the test problem AGARD.

Oboronnaya tekhnika

[Defense

Тechnology], 2015, no. 2, pp. 21–36 (in Russ.).

[16] Bykov N.V., Nesterenko E.A. Mathematical modeling and visualization of intrachamber

processes in a ballistic setup with hydrodynamic effect.

Nauchnaya vizualizatsiya

[Scientific

Visualization], 2015, vol. 7, no. 1, pp. 65–77.

Available at:

http://sv-journal.org/2015-1/06.php?lang=en

[17] Bykov N.V., Nesterenko E.A. Automated selection of the design parameters of ballistic

systems with hydrodynamic effect on the basis of genetic algorithm.

Abstr. VIII All-Russian sci.

conf. with inter. participation "Mathematical modeling of the developing economy, ecology and

technology"

. ECOMOD 2014. Moscow, October 21–24, 2014. Moscow, CC Ross. Akad. Nauk

Publ., 2014. 53 p.

[18] Semenov I.V., Utkin P.S., Akhmed'yanov I.F., Men'shov I.S. The use of multiprocessor

computers for the internal ballistics problems solution.

Vychislitel'nye metody i programmiro-

vanie

[Numerical methods and programming], 2011, vol. 12, pp. 183–193. Available at:

http://num-meth.srcc.msu.ru/english/index.html

[19] Nessbaum J., Helluy P., Herard J.-M., Carriere A. Numerical simulations of gas-particle

flows with combustion.

Flow, Turbulence and Combustion

, 2006, vol. 76, iss. 4, pp. 403–417.

[20] Ioselevich V.A., Pilyugin N.N., Chernyavskii

S.Yu

. On the effect of friction on the motion

of the piston under the action of the combustion products.

Prikladnaya mekhanika i tekhnich-

eskaya fizika

[J. of Appl. Mech. and Tech. Phys.], 1978, no. 5, pp. 73–80 (in Russ.).

[21] Kasimov V.Z., Ushakova O.V., Khomenko Yu.P. Numerical modeling of interior ballistics

processes in light gas guns.

J. of Appl. Mech. and Tech. Phys

., 2003, vol. 44, iss. 5, pp. 612–619.

[22] Kulikovskiy A.G., Pogorelov N.V., Semenov

A.Yu

. Matematicheskie voprosy chislennogo

resheniya giperbolicheskikh sistem uravneniy [Mathematical problems of the numerical solu-

tion of hyperbolic systems]. Moscow, Nauka Publ., 2001. 608 p.

[23] Liou M. S., Steffen C. J. A new flux splitting scheme.

J. of Computational Physics

, 1993,

vol. 107, pp. 23–39.

[24] Wada Y. A flux splitting scheme with high-resolution and robustness for discontinuities.

NASA Tech. Memorandum 106452

; AIAA-94-0083, 1994.