Investigation of hot jet on active control of oblique detonation waves

  • Hongbin LI
  • , Jianling LI*
  • , Cha XIONG
  • , Wei FAN
  • , Lei ZHAO
  • , Wenhu HAN
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

28 Citations (Scopus)

Abstract

The hot jet injection is utilized to actively control the oblique detonation wave, such as initiating and stabilizing an oblique detonation wave at a desired position that is shorter than the length of induction zone, and adjust the height of the oblique detonation wave at the exit of combustor when the oblique detonation wave engine is working on off-design flight conditions. The fifth order Weighted Essentially Non-Oscillatory (WENO) scheme and a two-step reversible reaction mechanism of the stoichiometric H2/Air are adopted in the simulations. With the help of hot jet injection, the transition from inert oblique shock wave to the oblique detonation wave immediately occurs near the position of hot jet injection, and consequently the length of combustor can be reduced. The angle of oblique detonation wave also decreases as the hot jet injection approaches the nose of wedge. Additionally, the height of the oblique detonation wave at the exit of combustor can be flexibly adjusted, and also depends on the injection position and the strength of the hot jet. If the velocity of the hot jet is too weak to directly trigger the overall oblique detonation wave at the position of injection, increasing the injection pressure will improve the strength of the hot jet and results in a successful transition.

Original languageEnglish
Pages (from-to)861-869
Number of pages9
JournalChinese Journal of Aeronautics
Volume33
Issue number3
DOIs
Publication statusPublished - Mar 2020

Keywords

  • Active control
  • Hot jet
  • Numerical simulation
  • Oblique detonation wave
  • Supersonic propulsion

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