Numerical investigation of hydrodynamic instabilities of the heliopause

被引:37
|
作者
Wang, C
Belcher, JW
机构
[1] MIT, Dept Phys, Cambridge, MA 02139 USA
[2] MIT, Ctr Space Res, Cambridge, MA 02139 USA
关键词
D O I
10.1029/97JA02773
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The heliopause is the interface between the solar wind plasma and the very local interstellar medium (VLISM) and manifests itself as a tangential discontinuity across which the flow velocity and the plasmas density jump (except at the nose). Hydrodynamic instabilities of either the Rayleigh-Taylor type or the Kelvin-Helmholtz type will likely develop at the heliopause. To our knowledge, previous analytical studies of these instabilities were confined to linear perturbation analyses, and most existing numerical simulations did not obtain the Kelvin-Helmholtz type instability of the heliopause, probably due to large numerical dissipation. In this paper we use the piecewise parabolic method (PPM) in our hydrodynamic simulation to study the stability of the heliopause. The PPM can capture shocks and discontinuities within 1-2 grid points with negligible numerical dissipation. For simplicity, magnetic fields, interstellar neutrals, cosmic rays, etc., are neglected in our model. We thus focus our attention on the general pattern of the Kelvin-Helmholtz instability at the heliopause. In both the "one-shock" and "two-shock" models, the Kelvin-Helmholtz instability occurs at the heliopause and leads to nonlinear oscillations of the heliopause and the termination shock with a timescale of the order of 10(2) years. The excursion of the heliopause at the nose as a result of these oscillations is of the order of tens of astronomical units, with much smaller excursions for the termination shock. Growth rates from the simulations are in reasonable agreement with theoretical estimates. The possible stabilizing influence of the magnetic field, neglected in the present model, is discussed.
引用
收藏
页码:247 / 256
页数:10
相关论文
共 50 条
  • [21] Experiment and numerical investigation on tip flow instabilities of compressors
    Wang H.
    Wang P.
    Xiang H.
    Zhang J.
    Wang Y.
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2023, 38 (03): : 674 - 684
  • [22] Numerical simulation of the hydrodynamic instabilities of Richtmyer-Meshkov and Rayleigh-Taylor
    Fortova, S. V.
    Shepelev, V. V.
    Troshkin, O. V.
    Kozlov, S. A.
    2ND ALL-RUSSIAN SCIENTIFIC CONFERENCE THERMOPHYSICS AND PHYSICAL HYDRODYNAMICS WITH THE SCHOOL FOR YOUNG SCIENTISTS, 2017, 899
  • [23] Numerical investigation of plasma-driven superradiant instabilities
    Dima, Alexandru
    Barausse, Enrico
    CLASSICAL AND QUANTUM GRAVITY, 2020, 37 (17)
  • [24] Numerical study of three-dimensional instabilities in a hydrodynamic model of Czochralski growth
    Gelfgat, A. Yu.
    Rubinov, A.
    Bar-Yoseph, P. Z.
    Solan, A.
    JOURNAL OF CRYSTAL GROWTH, 2005, 275 (1-2) : E7 - E13
  • [25] Numerical study of hydrodynamic instabilities during growth of dielectric crystals from the melt
    Wilke, Hermann
    Crnogorac, Nebojsa
    Cliffe, K. Andrew
    JOURNAL OF CRYSTAL GROWTH, 2007, 303 (01) : 246 - 249
  • [26] Hydrodynamic instabilities in axisymmetric geometry self-similar models and numerical simulations
    Breil, J
    Hallo, L
    Maire, PH
    Olazabal-Loumé, M
    LASER AND PARTICLE BEAMS, 2005, 23 (02) : 155 - 160
  • [27] NUMERICAL INVESTIGATION OF HYDRODYNAMIC PERFORMANCE OF CONVENTIONAL AND DUCTED PROPELLERS
    Tarafder, M. S.
    Haque, M. I.
    Asaduzzaman, M.
    Laku, M. Z. I.
    JOURNAL OF NAVAL ARCHITECTURE AND MARINE ENGINEERING, 2023, 20 (03):
  • [28] A numerical investigation on hydrodynamic characteristics of the circulating water channel
    Gucheng, Zhu
    Zuogang, Chen
    Yi, Dai
    OCEAN ENGINEERING, 2021, 236
  • [29] The Numerical Investigation on Bubble Interaction Dynamics in Hydrodynamic Cavitation
    Lv, Liang
    Luo, Xu
    Zhang, Hongxia
    Cui, Bing
    Chen, Lihai
    MECHANIKA, 2021, 27 (02): : 115 - 121
  • [30] Experimental and numerical investigation of hydrodynamic coefficients of subsea manifolds
    Du, Yang
    Zheng, Miaozi
    Liang, Xu
    Wang, Yingying
    Chai, Zhe
    Jo, HyoJae
    Duan, Menglan
    SHIPS AND OFFSHORE STRUCTURES, 2021, 16 (06) : 595 - 607