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Curvature effect on stabilization of cellular detonations in channel, circular arc and spherical shell geometries

Journal Article · · Proceedings of the Combustion Institute
Not Available
Sponsoring Organization:
USDOE
OSTI ID:
2447674
Journal Information:
Proceedings of the Combustion Institute, Journal Name: Proceedings of the Combustion Institute Journal Issue: 1-4 Vol. 40; ISSN 1540-7489
Publisher:
ElsevierCopyright Statement
Country of Publication:
United States
Language:
English

References (19)

Effects of the dimensionless radius of an annulus on the detonation propagation characteristics in circular and non-circular rotating detonation engines journal October 2021
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Stable detonation wave propagation in rectangular-cross-section curved channels journal February 2012
Detonation shock dynamics modeling and calibration of the HMX-based conventional high explosive PBX 9501 with application to the two-dimensional circular arc geometry journal December 2020
Dynamics of detonation transmission and propagation in a curved chamber: a numerical and experimental analysis journal January 2021
Detonation wave propagation in semi-confined layers of hydrogen–air and hydrogen–oxygen mixtures journal March 2017
Shock wave and detonation propagation through U-bend tubes journal January 2007
Propagation of a stable gaseous detonation in a circular arc configuration journal January 2019
The Effect of Curvature and Confinement on Gas-Phase Detonation Cellular Stability journal January 2019
Experimental and modeling analysis of detonation in circular arcs of the conventional high explosive PBX 9501 journal January 2021
Cellular detonation stability. Part 1. A normal-mode linear analysis journal August 1998
Steady detonation propagation in a circular arc: a Detonation Shock Dynamics model journal October 2016
Dynamics of detonations with a constant mean flow divergence journal April 2018
Smoothing and Differentiation of Data by Simplified Least Squares Procedures. journal July 1964
Stability of Idealized One-Reaction Detonations journal May 1964
Modeling two‐dimensional detonations with detonation shock dynamics journal July 1989
High resolution numerical simulation of ideal and non-ideal compressible reacting flows with embedded internal boundaries journal January 1997
One-dimensional linear stability of curved detonations
  • Watt, S. D.; Sharpe, G. J.
  • Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences, Vol. 460, Issue 2049 https://doi.org/10.1098/rspa.2004.1290
journal September 2004
High Explosive Detonation–Confiner Interactions journal January 2018

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