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Effect of Primary Rocket Jet on Thermodynamic Cycle of RBCC in Ejector Mode by Binbin Lin; Hongliang Pan; Lei Shi; Jinying Ye is a Engineering article available to read on EtoBox.
What is Effect of Primary Rocket Jet on Thermodynamic Cycle of RBCC in Ejector Mode about?
## Abstract Thrust augmentation in ejector mode is important to improve engine performance so as to enable more propulsion applications of RBCC. Usually, the internal flow-path is configured mainly for combustion organization in ramjet and scramjet modes, thus the RBCC performance in ejector mode will mainly depend on the primary rocket operating parameters and jet expansion state. Considering such restrictions and requirements on the primary rocket, this paper studies the effects of the primary rocket jet on the thermodynamic cycle performance of ejector mode, in which incoming air is dominated by ejector-suction by the primary rocket jet at low flight Mach numbers. It is found that the engine performance in ejector mode will be improved by increasing the primary rocket chamber pressure and nozzle expansion ratio. Furthermore, for better design of primary rocket, primary rocket chamber pressure should be maximized on the basis of ensuring a complete expansion of primary rocket to the ambient pressure at the design point of flight conditions after 3-D CFD simulations for a full flow-path of RBCC including fore-airframe and aft-airframe of a flight vehicle. The results of 3-D numeri
Who reads Effect of Primary Rocket Jet on Thermodynamic Cycle of RBCC in Ejector Mode?
It is typically read by researchers, students, and practitioners in Engineering.
- Author
- Binbin Lin; Hongliang Pan; Lei Shi; Jinying Ye
- Publisher
- Walter de Gruyter GmbH
- Published
- 2020
- Language
- EN
- Field
- Engineering (Physical Sciences)
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