Investigation of Pre-Ignition Propellant Mixing in Rotating Detonation Rocket Engine

dc.contributor.advisorKnowlen, Carl
dc.contributor.authorRoberts, Quentin
dc.date.accessioned2023-08-14T17:01:37Z
dc.date.available2023-08-14T17:01:37Z
dc.date.issued2023-08-14
dc.date.submitted2023
dc.descriptionThesis (Master's)--University of Washington, 2023
dc.description.abstractPre-ignition propellant mixing was simulated using computational fluid dynamics in various rotating detonation rocket engine (RDRE) configurations. Two different RDREs were used for the simulations, a 25.4 mm diameter RDRE and a 10 mm diameter RDRE. The 25.4 mm diameter RDRE used multiple configurations, with different core plug sizes producing a 3 mm, 5 mm, and 7 mm wide annular combustion chamber, as well as a coreless cylindrical 25.4 mm diameter combustion chamber configuration. The 25.4 mm RDRE used methane and oxygen propellants. The 10 mm diameter RDRE was operated and simulated only in a coreless configuration, but with both methane and oxygen propellants, and hydrogen and oxygen propellants. Four cases for each configuration were simulated, three with similar total mass flow rates and equivalence ratios near stoichiometric, fuel rich, and fuel lean, and the fourth varying total mass flow rate. Mixing was simulated in ANSYS Fluent using a standard k-omega turbulence model, and a non-reacting species transport model. Simulation results were verified by comparing simulated wall pressure data and injector discharge coefficient data with experimental data. Average mixedness and mixed layer location versus distance from the injector face were compared across the simulated RDREs, propellant combinations, configurations and cases. Frames from high speed video of experimental hot fire tests were compared with simulations, comparing radial mixing trends with radial luminosity profiles.
dc.embargo.termsOpen Access
dc.format.mimetypeapplication/pdf
dc.identifier.otherRoberts_washington_0250O_25316.pdf
dc.identifier.urihttp://hdl.handle.net/1773/50199
dc.language.isoen_US
dc.rightsnone
dc.subjectComputational Fluid Dynamics
dc.subjectInjector Mixing
dc.subjectPressure-Gain Combustion
dc.subjectRotating Detonation Engine
dc.subjectAerospace engineering
dc.subject.otherAeronautics and astronautics
dc.titleInvestigation of Pre-Ignition Propellant Mixing in Rotating Detonation Rocket Engine
dc.typeThesis

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