This work assesses the capabilities of an innovative fluid dynamics solver, originally developed to deal with high-enthalpy flows in the context of hypersonic planetary entry, and now applied to simulate problems involving complex interactions between strong shock waves and combustion processes. With a view toward future simulations of rotating detonation combustors, the solver accuracy is assessed by considering 1D and 2D detonation fronts.
Assessment of a CFD Solver for Detonation Wave Simulations / Bonelli, F., Milia, D., Ninni, D., Pascazio, G., Laera, D.. - 69:(2026), pp. 183-186. (10th CEAS Aerospace Europe Conference and 28th AIDAA International Congress, 2025 ita 2025) [10.21741/9781644904251-32].
Assessment of a CFD Solver for Detonation Wave Simulations
Bonelli F.
;Milia D.;Ninni D.;Pascazio G.;Laera D.
2026
Abstract
This work assesses the capabilities of an innovative fluid dynamics solver, originally developed to deal with high-enthalpy flows in the context of hypersonic planetary entry, and now applied to simulate problems involving complex interactions between strong shock waves and combustion processes. With a view toward future simulations of rotating detonation combustors, the solver accuracy is assessed by considering 1D and 2D detonation fronts.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


