A new model for the separation of meteoroid fragments in the atmosphere

被引:1
|
作者
Barri, N. G. [1 ]
机构
[1] Moscow MV Lomonosov State Univ, Inst Mech, Moscow 119899, Russia
来源
EARTH MOON AND PLANETS | 2008年 / 102卷 / 1-4期
关键词
meteoroid fragmentation; transverse scattering modeling; fragment separation; fragment velocity; Moravka fireball;
D O I
10.1007/s11038-007-9204-0
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
This work is devoted to modeling of the transverse scattering of meteoroid fragments in the atmosphere by adopting supersonic gas dynamics around a system of bodies. Artem'eva and Shuvalov (1996, Shock Waves, 367) and Zhdan et al. (2004, Dokl. Phys., 315-317) found that the transverse force decreases with the increase of the distance between fragments, that is, fragments do not separate in a transverse direction under the action of constant repulsion force. This work on the decreasing transverse force uses the values of the transverse force coefficient by Zhdan et al. (2004, Dokl. Phys., 315-317) obtained from numerical modeling for spheres in a supersonic flow to derive the analytical solution of the dynamic equation for a fragment. The new model of layer-by-layer scattering of meteoroid fragments moving as a system of bodies is constructed on the basis of the analytical solutions derived in this work and the numerical data by Zhdan et al. (2005, Dokl. Phys., 514-518).
引用
收藏
页码:395 / 401
页数:7
相关论文
共 50 条
  • [1] A New Model for the Separation of Meteoroid Fragments in the Atmosphere
    N. G. Barri
    Earth, Moon, and Planets, 2008, 102 : 395 - 401
  • [2] Numerical Study on the Rotation of Meteoroid Fragments during their Separation in the Atmosphere
    Lukashenko, Vladislav
    Maksimov, Fedor
    COMPUTATIONAL MECHANICS AND MODERN APPLIED SOFTWARE SYSTEMS (CMMASS'2019), 2019, 2181
  • [3] Basic aerodynamical properties of meteoroid fragments in the terrestrial atmosphere
    Barn, Natalia
    MATHEMATICS AND ASTRONOMY: A JOINT LONG JOURNEY, 2010, 1283 : 137 - 144
  • [4] On the separation of two meteoroid fragments of different shapes
    Lukashenko, V. T.
    Maksimov, F. A.
    APPLIED MATHEMATICS, COMPUTATIONAL SCIENCE AND MECHANICS: CURRENT PROBLEMS, 2020, 1479
  • [5] A model for fragmentation of a meteoroid in the atmosphere
    V. P. Stulov
    L. Yu. Titova
    Doklady Physics, 2001, 46 : 50 - 51
  • [6] A model for fragmentation of a meteoroid in the atmosphere
    Stulov, VP
    Titova, LY
    DOKLADY PHYSICS, 2001, 46 (01) : 50 - 51
  • [7] The new ESA meteoroid model
    Dikarev, V
    Grün, E
    Baggaley, J
    Galligan, D
    Landgraf, M
    Jehn, R
    SPACE DEBRIS, 2005, 35 (07): : 1282 - 1289
  • [8] ANALYTICAL MODEL FOR DETERMINING THE OUTCOME OF METEOROID ENTRY INTO THE MARTIAN ATMOSPHERE
    Kuznetsova, D.
    Gritsevich, M.
    Silber, E. A.
    Christou, A.
    METEORITICS & PLANETARY SCIENCE, 2018, 53 : 6198 - 6198
  • [9] Fragmentation model of meteoroid motion, mass loss, and radiation in the atmosphere
    Ceplecha, Z
    ReVelle, DO
    METEORITICS & PLANETARY SCIENCE, 2005, 40 (01) : 35 - 54
  • [10] The Martian atmosphere as a meteoroid detector
    Adolfsson, LG
    Gustafson, BAS
    Murray, CD
    ICARUS, 1996, 119 (01) : 144 - 152