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- W2320171156 abstract "The rocket based combined cycle (RBCC) approach is a promising concept for advanced space eansportation systems. The RBCC engine concept integrates air-breathing propulsion with rocket propulsion to exploit atmospheric air as the oxidizer during the course of the vehicle trajectory. Although there are numerous design variations, the gamut of concepts includes four flight regimes, viz. rocketejector, ramjet, scramjet and all-rocket. Of these four flight regimes, the rocket-ejector mode, which encompasses the zero to roughly two Mach number range of the flight vehicle, is the least well understood. The goal of the current project is to investigate this mode utilizing a joint experimental/analytical approach. The experimental phase of the program includes studying the mixing and combustion characteristics of the rocket-ejector system utilizing state-of-the-art diagnostic techniques. In this vein, a two-dimensional direct-connect variable geometry rocket-ejector system with enhanced optical access has been designed and fabricated. The system design is based on an earlier study, however, the goal of this program is to systematically increase the range of understanding over a wide range of flow/geometry parameters. In this * Graduate Student, Student Member AIAA ’ Senior Research Associate, Member AK4 * Research Associate, Member AIAA 5 Professor, Member AIAA Copyright" @default.
- W2320171156 created "2016-06-24" @default.
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- W2320171156 date "1999-01-11" @default.
- W2320171156 modified "2023-09-27" @default.
- W2320171156 title "Raman spectroscopy based study of RBCC ejector mode performance" @default.
- W2320171156 cites W2011274720 @default.
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- W2320171156 doi "https://doi.org/10.2514/6.1999-90" @default.
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