A computational fluid dynamic (CFD) model of a rotating detonation engine (RDE) is used to examine the impact of an exhaust throat (i.e., a constriction) on performance. The model simulates an RDE which is premixed, adiabatic, inviscid, and which contains an inlet valve that prevents backflow from the high pressure region directly behind the rotating detonation. Performance is assessed in terms of ideal net specific impulse which is computed on the assumption of lossless expansion of the working fluid to the ambient pressure through a notional diverging nozzle section downstream of the throat. Such a semi-idealized analysis, while not real-world, allows the effect of the throat to be examined in isolation from, rather than coupled to (as it...
A RDE has higher thermal efficiencies in comparison to its traditional gas turbine counterparts. Thu...
Rotating detonation engines (RDEs) have the potential to further increase the performance of air-bre...
Rotating detonation engines (RDEs) present great potential for significant improvement in efficiency...
An analysis is presented of an experimental rig comprising a rotating detonation engine (RDE) with b...
An instability is described which arises in computational fluid dynamic (CFD) simulations of semi-id...
A computational fluid dynamic (CFD) model of a rotating detonation engine (RDE) is used to examine t...
A quasi-two-dimensional, computational fluid dynamic (CFD) simulation of a rotating detonation engin...
The pressure gain combustion (PGC) community is currently investigating rotating detonation engine (...
A simplified, two-dimensional, computational fluid dynamic (CFD) simulation, with a reactive Euler s...
A two-dimensional, computational fluid dynamic (CFD) simulation of a semi-idealized rotating detonat...
As turbine and rocket engine technology matures, performance increases between successive generation...
Desire for a more efficient air breathing engine has shifted research attention to the Rotating Deto...
Detonation-based combustors leverage the higher thermodynamic efficiency of the Atkinson cycle compa...
A cycle analysis model for an airbreathing, rotating detonation wave engine (RDE) is presented. The ...
High-fidelity numerical simulations of an experimental rotating detonation engine with discrete fuel...
A RDE has higher thermal efficiencies in comparison to its traditional gas turbine counterparts. Thu...
Rotating detonation engines (RDEs) have the potential to further increase the performance of air-bre...
Rotating detonation engines (RDEs) present great potential for significant improvement in efficiency...
An analysis is presented of an experimental rig comprising a rotating detonation engine (RDE) with b...
An instability is described which arises in computational fluid dynamic (CFD) simulations of semi-id...
A computational fluid dynamic (CFD) model of a rotating detonation engine (RDE) is used to examine t...
A quasi-two-dimensional, computational fluid dynamic (CFD) simulation of a rotating detonation engin...
The pressure gain combustion (PGC) community is currently investigating rotating detonation engine (...
A simplified, two-dimensional, computational fluid dynamic (CFD) simulation, with a reactive Euler s...
A two-dimensional, computational fluid dynamic (CFD) simulation of a semi-idealized rotating detonat...
As turbine and rocket engine technology matures, performance increases between successive generation...
Desire for a more efficient air breathing engine has shifted research attention to the Rotating Deto...
Detonation-based combustors leverage the higher thermodynamic efficiency of the Atkinson cycle compa...
A cycle analysis model for an airbreathing, rotating detonation wave engine (RDE) is presented. The ...
High-fidelity numerical simulations of an experimental rotating detonation engine with discrete fuel...
A RDE has higher thermal efficiencies in comparison to its traditional gas turbine counterparts. Thu...
Rotating detonation engines (RDEs) have the potential to further increase the performance of air-bre...
Rotating detonation engines (RDEs) present great potential for significant improvement in efficiency...