15.
Романов А.С.
,
Семиколенов А.В.
Безнапорное заполнение капилляра частично
смачивающей жидкостью // Ракетно-космические двигательные установки: ма-
териалы Всеросс. науч.-техн. конф. (Москва, октябрь, 2013). Минобрнауки РФ,
МГТУ им. Н.Э. Баумана, Региональная общественная организация выпускни-
ков и друзей кафедры “Ракетные двигатели” МГТУ им. Н.Э. Баумана. М., 2013.
С. 49–53.
REFERENCES
[1] Bagrov V.V., Kurpatenkov A.V., Polyaev V.M. Kapillyarnye sistemy otbora zhidkosti
iz bakov kosmicheskikh letatel’nykh apparatov [The Capillary System for Fluid
Intake from the Spacecraft Tanks]. Moscow, UNPTs Energomash Publ., 1997. 328 p.
[2] Sapozhnikov V.B., Men’shikov V.A., Partola I.S., Korol’kov A.V. Development of
Ideas of Professor V.M. Polyaev on Application of Porous-meshed Materials for
Internal Tank Devices Providing Repeated Many Times Start-up of Liquid Propellant
Engines.
Vestn. Mosk. Gos. Tekh. Univ. im. N.E. Baumana, Mashinostr.
[Herald of
the Bauman Moscow State Tech. Univ., Mech. Eng.], 2006, no. 2 (63), pp. 78–88 (in
Russ.).
[3] Nauchnye osnovy tekhnologiy XXI veka [Scientific Bases of Technologies of the
XXI Century]. Moscow, UNPTs Energomash Publ., 2000. 136 p.
[4] Fedorov I.B., Kolesnikov K.S., eds. Nauchnye shkoly Moskovskogo
gosudarstvennogo tekhnicheskogo universiteta imeni N.E. Baumana. Istoriya
razvitiya [Scientific Schools of the Bauman Moscow State Technical University.
History of Development]. Moscow, MGTU im. N.E. Baumana Publ., 2005. 464 p.
[5] Novikov Yu.M., Bol’shakov V.A. The Concept of Creating Super-Reliable Filters
for High-Risk Facilities.
Ekologiya i promyshlennost’ Rossii (EKiP)
[Ecology and
Industry of Russia], 2001, no. 11, pp. 27–31 (in Russ.).
[6] Novikov Yu.M., Bol’shakov V.A. The First Results of Implementation of the Concept
of Creating Super-Reliable CPMM Filter for High-Risk Facilities and Other Objects
of Various Branches of the Russian Economy.
Bezopasnost’ zhiznedeyatel’nosti
[Life
Safety], 2002, no. 12, pp. 7–10 (in Russ.).
[7] Korol’kov A.A., Partola I.S., Sapozhnikov V.B. Teoreticheskie osnovy razrabotki
i eksperimental’noy otrabotki kapillyarnykh zabornykh ustroystv s minimal’nymi
ostatkami topliva [Principal Theory of Development and Experimental Testing
Capillary Intake Devices with Minimal Fuel Residues].
Nauch.-tekhn. razrabotki
OKB-23. KB
“
Salyut
”. Moscow, Vozdushnyy transport Publ., 2006. 720 p., pp. 313–
320.
[8] Martynov M.B., Konstantinov S.B., Novikov Yu.M., Bol’shakov V.A. Prospects
for Using Combined Porous Meshed Metals (CPMM) in Capillary-Type Innertank
Devices of Outer Space Spacecraft Fuel Tanks, Considering the Experience of Their
First Application Under the “Coupon” Program.
Raketno-kosmicheskie dvigatel’nye
ustanovki: Sb. Mat. Vseross. nauch.-tekhn. konf
. [Rocket and Space Propulsion
Systems. Proc. All-Russ. Sci. and Tech. Conf.]. Moscow, 2010. pp. 73–74 (in Russ.).
[9] Novikov Yu.M., Bol’shakov V.A., Partola I.S. The First Lengthy Capillary Structure
of the CPMM Intake Device: Confirmation of the Reliability and High Efficiency
based on the Results of Operation as part of Upper Stage “Breeze-M” Additional
Fuel Tank of the Rocket Space Complex “Proton-M/Briz-M”.
Raketno-kosmicheskie
dvigatel’nye ustanovki. Mat. Vseross. nauch.-tekhn. konf.
[Rocket and Space
Propulsion Systems. Proc. All-Russ. Sci. and Tech. Conf.]. Moscow, 2013, Nov.,
pp. 17–19 (in Russ.).
140 ISSN 0236-3941. Вестник МГТУ им. Н.Э. Баумана. Сер. “Машиностроение”. 2015. № 6