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RBCC Engine-Airframe Integration on an Osculating Cone . . . Engine integration has a large effect on off-design behavior, including maximum lift-to-drag ratio and zero lift angle of attack An analytical vehicle study is performed that integrates a rocket-based combined cycle engine with an osculating cones waverider-based fuselage
Engine-airframe integration on osculating cone waverider . . . In this study, a design methodology is examined for an airframe–inlet integrated full-waverider vehicle that can take advantage of the waverider’s ideal precompression surface for the engine as wel
ABSTRACT RBCC ENGINE-AIRFRAME INTEGRATION ON AN OSCULATING . . . As stated in Sec 1 1, the present work will incorporate an RBCC engine into an osculating cones waverider-based, engine-airframe integrated vehicle The goal is to develop a rapid, analytical method for predicting the flowfield both on the vehicle fuselage and in the engine flow path
Upgraded design methodology for airframe engine integrated . . . An upgraded airframe engine integrated design approach for a full-waverider vehicle considering thrust chamber design is proposed Compared with the existing design approach of the full-waverider vehicle, the isolator, the combustor, and the nozzle are designed complementally
Rocket-Based Combined-Cycle Engine Integration on an . . . In this study, a design methodology is examined for an airframe–inlet integrated full-waverider vehicle that can take advantage of the waverider’s ideal precompression surface for the engine as wel