抄録
This paper shows comparisons between computational fluid dynamics (CFD) calculations and planar laser-induced fluorescence and schlieren measurements of inert and reactive hypersonic flows around two-dimensional and axisymmetric bodies. In particular, both hydrogen-oxygen and methane-oxygen chemical reactions are considered for the shock-induced combustion in hypersonic flows. The hydrogen-oxidation mechanism consists of an existing mechanism of 8 reacting species and 19 elementary reactions. The reduced model of the methane-oxidation mechanism is newly derived from the GRI-Mech 1.2 optimized detailed chemical reaction mechanism, and consists of 14 species and 19 chemical reaction steps. Both chemical reaction mechanisms are combined with a point-implicit Euler CFD code. The OH species density distributions of the present numerical calculations and imaging experiments for both mixtures are found to be in qualitative agreement.
本文言語 | English |
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ページ(範囲) | 16-21 |
ページ数 | 6 |
ジャーナル | Journal of Propulsion and Power |
巻 | 16 |
号 | 1 |
DOI | |
出版ステータス | Published - 2000 1月 1 |
ASJC Scopus subject areas
- 航空宇宙工学
- 燃料技術
- 機械工学
- 宇宙惑星科学