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Pulsating Hydrodynamic Instability and Thermal Coupling in an Extended Landau/Levich Model of Liquid-Propellant CombustionHydrodynamic (Landau) instability in combustion is typically associated with the onset of wrinkling of a flame surface, corresponding to the formation of steady cellular structures as the stability threshold is crossed. In the context of liquid-propellant combustion, such instability has recently been shown to occur for critical values of the pressure sensitivity of the burning rate and the disturbance wavenumber, significantly generalizing previous classical results for this problem that assumed a constant normal burning rate. Additionally, however, a pulsating form of hydrodynamic instability has been shown to occur as well, corresponding to the onset of temporal oscillations in the location of the liquid/gas interface. In the present work, we consider the realistic influence of a nonzero temperature sensitivity in the local burning rate on both types of stability thresholds. It is found that for sufficiently small values of this parameter, there exists a stable range of pressure sensitivities for steady, planar burning such that the classical cellular form of hydrodynamic instability and the more recent pulsating form of hydrodynamic instability can each occur as the corresponding stability threshold is crossed. For larger thermal sensitivities, however, the pulsating stability boundary evolves into a C-shaped curve in the disturbance-wavenumber/ pressure-sensitivity plane, indicating loss of stability to pulsating perturbations for all sufficiently large disturbance wavelengths. It is thus concluded, based on characteristic parameter values, that an equally likely form of hydrodynamic instability in liquid-propellant combustion is of a nonsteady, long-wave nature, distinct from the steady, cellular form originally predicted by Landau.
Document ID
20000089818
Acquisition Source
Marshall Space Flight Center
Document Type
Conference Paper
Authors
Margolis, S. B.
(Sandia National Labs. Livermore, CA United States)
Date Acquired
August 19, 2013
Publication Date
October 1, 1999
Publication Information
Publication: JANNAF 36th Combustion Subcommittee Meeting
Volume: 2
Subject Category
Propellants And Fuels
Funding Number(s)
CONTRACT_GRANT: DE-AC04-94AL-85000
CONTRACT_GRANT: NASA Order C-32031-E
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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