燃烧室
超燃冲压发动机
超音速
点火系统
喷油器
气流
燃烧
边界层
燃烧室
喷嘴
航空航天工程
材料科学
机械
汽车工程
机械工程
工程类
物理
化学
有机化学
作者
Shuhei Takahashi,Naohiro Sato,Mitsuhiro Tsue,Michikata Kono,Masahiko Nakamura,Hiroshi Kondo,Yasushige Ujiie
摘要
Active control tests were performed to improve e ame-holding in a e xed-geometry rectangular scramjet combustor at an off-design point and to improve self-ignition in the combustor. With a e xed-geometry combustor, the pressure oscillation originated from unstable e ame-holding, and/or blowoff were measured at an off-design point. Eight air injectors were installed in the combustor wall, and secondary air was injected into the boundary layer, which developed downstream of a step that controlled the effective cross-sectional area of the combustor. Signals from pressure transducers on the combustor wall were used as feedback signals for the control. This control system was simple to install in a e xed-geometry combustor. The control system was effective in improving combustion oscillation and/or blowoff at an off-design point and was responsive to a rapid condition change. It was also valid for improving the selfignition limit.
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