Мощные энергодвигательные установки космического назначения…
Инженерный журнал: наука и инновации
# 7
2016
19
[8]
Mason L.S., Schreiber J.G. A Historical Review of Brayton and Stirling Power
Conversation Technologies for Space Applications.
NASA/TM
—2007-214976.
[9]
Kenney W.D., et al. Brayton Isotope Power System Ground Demonstrator.
Eleventh Intersociety Energy Conversion Engineering Conference
. American
Institute of Chemical Engineers, 1976, vol. 1, p. 201.
[10] Write S.A., Vernon M.E., Pickard P. Small Scale Closed Brayton Cycle
Dynamic Response Experiment Results.
Sandia Report SAND2006-3485
(Unlimited Release)/Sandia National Laboratories
– 2006.
[11]
Hervol D.S., Briggs M., Owen A.K., Lavelle T.A. Experimental and Analytical
Performance of a Dual Brayton Power Conversion System.
NASA/TM
—2009-
215511.
[12]
Hervol D.S., Mason L., Birchenough A., Pinero L. Experimental Investigations
From the Operation of a 2 kW Brayton Power Conversion Unit and a Xenon
Ion Thruster.
NASA/TM
-2004-212960.
[13]
Turner M.J.L.
Rocket and Spacecraft Propulsion: Principles, Practice and New
Developments
. Third Edition. Praxis Publishing Ltd, Chichester, UK, 2009.
[14]
McGuire M.L., et al. Use of High Power Brayton Nuclear Electric Propulsion
(NEP) for a 2033 Mars Round Trip Mission.
NASA/TM
-2006–214106.
[15]
Guimarães L.N.F., Camillo G.P., de Carvalho R.P. Preliminary Closed Brayton
Cycle Study for a Space Reactor Application.
International Nuclear Atlantic
Conference
(
INAC
). Santos, SP, Brazil, 2007.
[16]
Guimarães L.N.F., Camillo G.P., Placco G.M., et al. Power Conversion for a
Microrreactor: a Nuclear Space Application.
International Nuclear Atlantic
Conference
(
INAC
). Rio de Janeiro, RJ, Brazil, 2009.
[17]
Guimarães L.N.F. Nuclear Space Applications: A Brazilian View.
The XVIII
Meeting on Nuclear Reactor Physics and Thermal Hydraulics
(
ENFIR
). Recife,
PE, Brazil, 2013.
[18]
Arbekov A.N., Leontyev A.I.
Trudy MAI. Elektron. Zhurn. — Proceedings of
MAI
, 2011, no. 43. Available at:
http://www.mai.ru/science/trudy/published.php?ID=24713[19]
Stend dlya ispytaniy moschnogo vysokooborotnogo agregata
[Bench for testing
high-speed power unit]. Patent 2502975 RF, IPC G01М 15/00,
no. 2013103632/06б 2013. State Research Centre Federal State Unitary
Enterprise Keldysh Research Centre.
[20]
Elektricheskiy nagrevatel gaza
[Electric gas heater]. Useful model 119555 RF.
IPC H05B 3/40, no. 2011153459, 2012. State Research Centre Federal State
Unitary Enterprise Keldysh Research Centre.
[21]
Lovtsov A.S., Selivanov
M.Yu.Izvestiya RAN. Energetika — Proceedings of
the Russian Academy of Sciences. Power Engineering
, 2014, no. 6, pp. 3–9.
Andrianov D.I.
, engineer, space engineering and electro-rocket engines, State Research
Centre Federal State Unitary Enterprise Keldysh Research Centre.
Zakharenkov L.E
., Cand. Sci. (Eng.), leading engineer, space engineering and electro-
rocket engines, State Research Centre Federal State Unitary Enterprise Keldysh Research
Centre.
Karevskiy A.V.
, Cand. Sci. (Eng.), head of the sector, space engineering and electro-
rocket engines, State Research Centre Federal State Unitary Enterprise Keldysh Research
Centre.