Mechanism of detonation stabilization in a supersonic model combustor
From MaRDI portal
Publication:5146347
DOI10.1017/JFM.2020.920zbMath1461.76330OpenAlexW3091970094MaRDI QIDQ5146347
Ralf Deiterding, Xiaodong Cai, Yasser Mahmoudi, Jian-han Liang, Ming-Bo Sun
Publication date: 25 January 2021
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://pureadmin.qub.ac.uk/ws/files/219189808/Mechanism_of_detonation_stabilization_in_a_supersonic_model_combustor.pdf
Related Items (1)
Cites Work
- High order strong stability preserving time discretizations
- An adaptive high-order hybrid scheme for compressive, viscous flows with detailed chemistry
- Adaptive mesh refinement for hyperbolic partial differential equations
- A low numerical dissipation patch-based adaptive mesh refinement method for large eddy simulation of compressible flows
- Generalized Runge-Kutta methods of order four with stepsize control for stiff ordinary differential equations
- Hybrid tuned center-difference-WENO method for large eddy simulations in the presence of strong shocks.
- Large Eddy Simulations of the Richtmyer–Meshkov Instability in a Converging Geometry
- The effect of diffusion on the dynamics of unsteady detonations
- TURBULENT MIXING
- The hydrodynamic structure of unstable cellular detonations
- Dynamics of detonations with a constant mean flow divergence
- Mach stem deformation in pseudo-steady shock wave reflections
- Numerical study on unstable surfaces of oblique detonations
- Diffusion and mixing effects in hot jet initiation and propagation of hydrogen detonations
- Triple-point shear layers in gaseous detonation waves
- The role of multidimensional instabilities in direct initiation of gaseous detonations in free space
- Influence of turbulent fluctuations on detonation propagation
This page was built for publication: Mechanism of detonation stabilization in a supersonic model combustor