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SCIENCE & EDUCATION

Bauman Moscow State Technical University.   El № FS 77 - 48211.   ISSN 1994-0408

Air breathing Hall Effect thrusters for Low Earth Orbit spacecraft

# 12, December 2013
DOI: 10.7463/1213.0660910
Article file: Kurilovich_P.pdf (274.12Kb)
authors: D.V. Duhopel'nikov, S.G. Ivakhnenko, D.A. Kurilovich

References

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4.               Hisamoto Y., Nishiyama K., Kuninaka H. Development Statue of Atomic Oxygen Simulator for Air Breathing Ion Engine. In: Proc. 32nd International Electric Propulsion Conference, Wiesbaden, Germany, September 2011, IEPC-2011-294.

5.               Tagawa M., Yokota K., Nishiyama K., Kuninaka H., Yoshizawa Y., Yamamoto D., Tsuboi T. Experimental Study of Air Breathing Ion Engine Using Laser Detonation Beam Source. Journal of Propulsion and Power, 2013, vol. 29, no. 3, pp. 501-506. DOI: 10.2514/1.B34530

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7.               DiCara D., Gonzalez del Amo J., Santovincenzo A., Dominguez B.C., Arcioni M., Caldwell A., Roma I. RAM Electric Propulsion for Low Earth Orbit Operation: an ESA study. In: Proc. 30th International Electric Propulsion Conference, Florence, Italy, September 2007, IEPC-2007-162.

8.               Diamant K.D. A 2-Stage Cylindrical Hall Thruster for Air Breathing Electric Propulsion. In: Proc. 46th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibi, Nashville, TN, July 2010, AIAA-2010-6522. DOI: 10.2514/6.2010-6522

9.               Hedin A.E. Extension of the MSIS Thermospheric Model into the Middle and Lower Atmosphere. Journal of Geophysical Research, 1991, vol. 96, no. A2, pp. 1159-1172. http://dx.doi.org/10.1029/90JA02125

10.            Grishin S.D., Leskov L.V., Kozlov N.P. Elektricheskie raketnye dvigateli [Electric rocket engines]. Moscow, Mashinostroenie, 1975. 272 p.

11.            Stone W.C., Witzgall C. Evaluation of Aerodynamic Drag and Torque for External Tanks in Low Earth Orbit. Journal of Research of the National Institute of Standards and Technology, 2006, vol. 111, no. 2, pp. 143-159. DOI: 10.6028/jres.111.014

12.            Dukhopel'nikov D.V., Ivakhnenko S.G. Vliyanie azimutal'nogo otkloneniya ionov na formu puchka dvigatelya s anodnym sloem [Influence of azimuthal deflection of ions on the beam shape of the engine with anode layer]. Nauka i obrazovanie MGTU im. N.E. Baumana [Science and Education of the Bauman MSTU], 2012, no. 10. DOI: 10.7463/1012.0483832

13.            Marakhtanov M.K., Dukhopel'nikov D.V., Ivakhnenko S.G., Vorob'ev E.V., Krylov V.I. Vliyanie azimutal'nogo otkloneniya ionov plazmennoy strui na tyagovyy KPD dvigatelya s anodnym sloem [The influence of the azimuthal deviation ion plasma jet on the traction motor efficiency with anode layer]. Nauka i obrazovanie MGTU im. N.E. Baumana [Science and Education of the Bauman MSTU], 2012, no. 12. DOI:  10.7463/1212.0483944

14.            Marakhtanov M.K., Dukhopel'nikov D.V., Ivakhnenko S.G., Vorob'ev E.V. Eksperimental'noe podtverzhdenie effekta azimutal'nogo otkloneniya ionov v dvigatelyakh s anodnym sloem [Experimental demonstration of azimuthal ion deviation effect in engines with anode layer]. Nauka i obrazovanie MGTU im. N.E. Baumana [Science and Education of the Bauman MSTU], 2012, no. 11. DOI: 10.7463/1112.0483882

15.            Vorob'ev E.V., Dukhopel'nikov D.V., Ivakhnenko S.G., Zhukov A.V., Kirillov D.V., Marakhtanov M.K. Khollovskii uskoritel' s fokusirovannym puchkom dlia nanorazmernoi obrabotki krupnogabaritnykh zerkal opticheskikh teleskopov [Hall accelerator with a focused beam for nanoscale processing of large-sized mirrors of optical telescopes]. Vestnik MGTU im. N.E. Baumana. Ser. Mashinostroenie [Herald of the Bauman MSTU. Ser. Mechanical Engineering], 2011, spec. iss. “Ionno-plazmennye tekhnologii” [“Ion-plasma technology”], pp. 35-41.

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