Abstract A methodology of the physical modeling of radiation electrification of the leeward surfaces of the materials used to construct space vehicles by auroral electrons, when the vehicles are flown supersonically around by the ionospheric plasma at low and middle heights, is developed. Based on laboratory modeling, numerical experiments, and in situ observations, the dependencies of charging levels and equilibrium potentials on the ratio of the auroral electron density to the positive ions in the near wake behind the body and in the undisturbed plasma are determined.


    Zugriff

    Zugriff über TIB

    Verfügbarkeit in meiner Bibliothek prüfen

    Bestellung bei Subito €


    Exportieren, teilen und zitieren



    Titel :

    Radiation Electrification of Spacecraft Leeward Surfaces by Auroral Electrons in the Ionosphere


    Beteiligte:
    Shuvalov, V. A. (Autor:in) / Kochubei, G. S. (Autor:in) / Priimak, A. I. (Autor:in) / Gubin, V. V. (Autor:in) / Tokmak, N. A. (Autor:in)

    Erschienen in:

    Erscheinungsdatum :

    2003




    Medientyp :

    Aufsatz (Zeitschrift)


    Format :

    Print


    Sprache :

    Englisch


    Schlagwörter :

    Klassifikation :

    BKL:    55.60 Raumfahrttechnik / 39.00 Astronomie: Allgemeines / 50.93 Weltraumforschung
    Lokalklassifikation TIB:    770/3520/8000



    Radiation Electrification of Spacecraft Leeward Surfaces by Auroral Electrons in the Ionosphere

    Shuvalov, V. A. / Kochubei, G. S. / Priimak, A. I. et al. | Springer Verlag | 2003


    Effective Recombination Coefficient in the Lower Ionosphere During Bursts of Auroral Electrons

    Ulich, T. / Turunen, E. / Nygren, T. et al. | British Library Conference Proceedings | 1999


    Electrification of Spacecraft

    A. I. Akishin / L. S. Novikov | NTIS | 1985


    Features - Probing the auroral ionosphere

    Powell, Joel W. | Online Contents | 2001


    Physicochemical model of the auroral ionosphere

    Dashkevich, Zh. V. / Ivanov, V. E. / Sergienko, T. I. et al. | Online Contents | 2017