Bulletin of the American Physical Society
71st Annual Meeting of the APS Division of Fluid Dynamics
Volume 63, Number 13
Sunday–Tuesday, November 18–20, 2018; Atlanta, Georgia
Session D02: Detonations & Supersonic Combustion
2:30 PM–4:14 PM,
Sunday, November 18, 2018
Georgia World Congress Center
Room: B203
Chair: Mark Short, Los Alamos National Lab
Abstract ID: BAPS.2018.DFD.D02.1
Abstract: D02.00001 : Thrust and flow field characterization of Rotating Detonation Engines using detailed numerical simulations
2:30 PM–2:43 PM
Presenter:
Prashant Tarey
(Univ of North Carolina - Charlotte)
Authors:
Prashant Tarey
(Univ of North Carolina - Charlotte)
Praveen K Ramaprabhu
(Univ of North Carolina - Charlotte)
Jacob A McFarland
(Univ of Missouri - Columbia)
Douglas Schwer
(Naval Research Laboratory - Washington DC)
Rotating Detonation Engines (RDE) operate on continuous detonation-based thermodynamic cycles to achieve increased efficiency over the traditional Brayton cycle. A typical RDE design involves an annular cylinder, into which a fuel-air mixture is injected axially and consumed by a rotating detonation wave, while the burnt mixture is expelled to produce thrust. In this work, we report on detailed numerical simulations of an unrolled 2D RDE, operating on a stoichiometric H2-air mixture. Results from two codes are reported, where the conservation equations are solved using Piecewise Parabolic Method (FLASH1) and discontinuous-Galerkin method (JENRE2). In addition to varying the numerics, effect of reaction chemistry was also examined, by performing simulations with an induction time model, a 1-step reaction mechanism, and a detailed (9-species, 19-step) reaction mechanism3. We also report on several quantities of interest including the detonation wave height, thrust, and specific impulse as the ratio of the injector pressure to the ambient pressure is varied.
1B. Fryxell et al., Astrophys. J., Suppl. Ser. 131, 273 (2000).
2D. Schwer, A. Corrigan & K. Kailasanath, AIAA SciTech, 52nd Aerospace Sciences Meeting, (2014).
3M.A. Mueller et al., Int. J. Chem. Kinet., 31, 113 (1999).
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.DFD.D02.1
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