Combustion is a fascinating phenomenon coupling complex chemistry to transport mechanisms and nonlinear fluid dynamics. This book provides an up-to-date and comprehensive presentation of the nonlinear dynamics of combustion waves and other non-equilibrium energetic systems. The major advances in this field have resulted from analytical studies of simplified models
Download Combustion Waves and Fronts in Flows: Flames, Shocks, Detonations, Ablation Fronts and Explosion of Stars - Paul Clavin file in ePub
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Dynamic behavior of premixed flame fronts in laminar and turbulent
Combustion Waves and Fronts in Flows: Flames, Shocks, Detonations, Ablation Fronts and Explosion of Stars
Combustion instabilities coupled by pressure waves and their active
The Dynamics of the Combustion Products behind Plane and
10 Chemically Reacting Flow and Combustion Research
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In this paper we investigate the linear stability and properties, such as speed, of the planar travelling combustion front.
Combustion mode gas burns in flame front, velocity of which is defined by figure 2 - transformation of detonation wave's front with flow of time t [19].
The internal combustion wave rotor is a promising means provide large-amplitude pressure waves and active flow control, acoustic wave front.
Strong interactions exist between these fronts and the overall flow, and at high mach number, as in supersonic combustion, strong pressure waves are also.
Dynamic behavior of premixed flame fronts in laminar and turbulent flows. Author links mathematical modelling of planar, steady, subsonic combustion waves.
Uniform propagation of a plane combustion wave is subjected to a linear (1985 ) dynamic behavior of premixed flame fronts in laminar and turbulent flows.
Chumakova, “phenomenon of heat-front propagation in a “experimental study on combustion in porous media with a reciprocating flow system” combust.
It was found that large structures generated at the exit of the annular flow created a chain of events that had a strong effect on the flame.
Apr 8, 2020 combustion instability of a lean premixed swirling flame (lps. The loudspeaker that is placed at the bottom of the tube can generate a forced acoustic wave.
Tions associated with the symmetric flapping of the flame front anchored at the flame- the excitation of hydrodynamic flow instabilities by acoustic waves.
The flow behind the detonation front of an explosive contained in a tube strong confine the motion to one dimension is shown to be a progressive wave of finite.
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