arXiv · 1908.03116
Mode-Locked Rotating Detonation Waves: Experiments and a Model Equation
Abstract
Direct observation of a Rotating Detonation Engine combustion chamber has enabled the extraction of the kinematics of its detonation waves. These records exhibit a rich set of instabilities and bifurcations arising from the interaction of coherent wave fronts and global gain dynamics. We develop a model of the observed dynamics by recasting the Majda detonation analog as an autowave. The solution fronts become attractors of the engine; i.e., mode-locked rotating detonation waves. We find that detonative energy release competes with dissipation and gain recovery to produce the observed dynamics and a bifurcation structure common to driven-dissipative systems, such as mode-locked lasers.
Explore related subjects
Keep this discovery
James Koch, Mitsuru Kurosaka, Carl Knowlen, J. Nathan Kutz. 2019-08-08. Mode-Locked Rotating Detonation Waves: Experiments and a Model Equation. https://doi.org/10.1103/physreve.101.013106
Cite the original work for its findings. Save a collection to share your selection of sources.