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Journal of Zhejiang University SCIENCE A

ISSN 1673-565X(Print), 1862-1775(Online), Monthly

Mode transition process in a typical strut-based scramjet combustor based on a parametric study

Abstract: The combustion performance of hydrogen fuel in a scramjet combustor has been a popular focus for scholars all over the world. In this study, the influence of the jet-to-crossflow pressure ratio on combustion performance in a scramjet combustor was investigated numerically, and the influence of a wall-mounted cavity was evaluated. The simulations were conducted using the Reynolds-averaged Navier-Stokes (RANS) equations coupled with the renormalization group (RNG) k-ε turbulence model and the single-step chemical reaction mechanism. This numerical approach was validated by comparing predicted results with published experimental shadowgraphs and velocity and temperature measurements. When the pressure of the wall-injector increases, the performance of the combustor decreases. At the same inflow condition, this may lead to a scram-to-ram mode transition. The cavity adopted in this study would prevent pre-combustion shock waves from pushing out of the isolator and help to stabilize the flow field, but it would decrease the mixing and combustion efficiencies.

Key words: Scramjet; Mode transition; Strut; Cavity; Combustion performance

Chinese Summary  <26> 基于支板的超燃冲压发动机燃烧室模态转换过程参数化研究

关键词组:超燃冲压发动机;模态转换;支板;凹腔;燃烧性能


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DOI:

10.1631/jzus.A1700617

CLC number:

V22

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On-line Access:

2018-06-04

Received:

2017-11-17

Revision Accepted:

2018-03-07

Crosschecked:

2018-05-09

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