Regular refraction of an oblique shock wave at the tangential discontinuity

被引:0
|
作者
Upyrev, Vladimir V. [1 ]
Bulat, Pavel V. [1 ]
机构
[1] Baltic State Tech Univ Voenmeh DF Ustinov, Fed State Budget Educ Inst Higher Educ, St Petersburg, Russia
关键词
Shock wave; Refraction; Reflected discontinuity; Discontinuity along characteristic surface (char); Rarefaction wave; FAST GAS INTERFACE;
D O I
10.1016/j.euromechflu.2018.07.019
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
This article is devoted to the regular refraction of an oblique shock wave at the tangential discontinuity. The calculations were performed for an ideal gas model using the numerical and analytical methods for solving the equations called the dynamic compatibility conditions at the tangential discontinuity. Basic equations are given. This article examines the domains of shock wave configurations with various types of reflected discontinuities within them, including characteristic refraction (induced by the change in char), and refraction patterns with a reflected shock and a reflected rarefaction wave. Each refraction domain was mapped by type with regard to the Mach number, adiabatic exponents of two flows, and the intensity of a refracted oblique shock wave. The boundary between the regular and irregular refractions was found. Research results can be applied to simulate the shock waves processes that occur in rotating detonation engines, as well as in stationary detonation engines. (C) 2018 Elsevier Masson SAS. All rights reserved.
引用
收藏
页码:531 / 537
页数:7
相关论文
共 50 条
  • [21] STABILITY AND AMBIGUOUS REPRESENTATION OF SHOCK WAVE DISCONTINUITY IN MEDIA WITH ARBITRARY THERMODYNAMIC PROPERTIES
    Likhachev, A. P.
    Konyukhov, A. V.
    Fortov, V. E.
    Oparin, A. M.
    Anisimov, S. I.
    SHOCK COMPRESSION OF CONDENSED MATTER - 2009, PTS 1 AND 2, 2009, 1195 : 37 - +
  • [22] The refraction of shock pairs
    Henderson, L. F.
    Puckett, E. G.
    SHOCK WAVES, 2014, 24 (06) : 553 - 572
  • [23] Reflection of an Oblique Shock Wave in a Reacting Gas with a Finite Relaxation–Zone Length
    A. E. Medvedev
    Journal of Applied Mechanics and Technical Physics, 2001, 42 (2) : 211 - 218
  • [24] Shock wave evolution and discontinuity propagation for relativistic superfluid hydrodynamics with spontaneous symmetry breaking
    Zhang, Sun
    PHYSICS LETTERS B, 2014, 729 : 136 - 142
  • [25] Angle of total refraction in the interaction of a plane skew shock wave with the interface of two media
    Andilevko, S.K.
    Inzhenerno-Fizicheskii Zhurnal, 2000, 73 (06): : 1167 - 1169
  • [26] Refraction of dispersive shock waves
    El, G. A.
    Khodorovskii, V. V.
    Leszczyszyn, A. M.
    PHYSICA D-NONLINEAR PHENOMENA, 2012, 241 (18) : 1567 - 1587
  • [27] Some aspects of streamwise vortex behavior during oblique shock wave vortex interaction
    Smart, MK
    Kalkhoran, IM
    Popovic, S
    SHOCK WAVES, 1998, 8 (04) : 243 - 255
  • [28] Experimental and numerical study of the reflection of an oblique shock wave in a stationary hypersonic flow.
    Chpoun, A
    Passerel, D
    Lengrand, JC
    Li, H
    BenDor, G
    RECHERCHE AEROSPATIALE, 1996, (02): : 95 - 105
  • [29] Computations of Interaction of an Incident Oblique Shock Wave with a Turbulent Boundary Layer on a Flat Plate
    N. N. Fedorova
    I. A. Fedorchenko
    Journal of Applied Mechanics and Technical Physics, 2004, 45 (3) : 358 - 366
  • [30] Influence of regular refraction on the statistical properties of the fluctuations of the amplitude level of wave in random-inhomogeneous medium
    Prikhodko, L. I.
    Vologdin, A. G.
    Shirokov, I. A.
    21ST INTERNATIONAL SYMPOSIUM ON ATMOSPHERIC AND OCEAN OPTICS: ATMOSPHERIC PHYSICS, 2015, 9680