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  1. Russian Journal of Physical Chemistry B
  2. Russian Journal of Physical Chemistry B : Volume 4
  3. Russian Journal of Physical Chemistry B : Volume 4, Issue 4, August 2010
  4. Existence of pressure driven wave
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Russian Journal of Physical Chemistry B : Volume 11
Russian Journal of Physical Chemistry B : Volume 10
Russian Journal of Physical Chemistry B : Volume 9
Russian Journal of Physical Chemistry B : Volume 8
Russian Journal of Physical Chemistry B : Volume 7
Russian Journal of Physical Chemistry B : Volume 6
Russian Journal of Physical Chemistry B : Volume 5
Russian Journal of Physical Chemistry B : Volume 4
Russian Journal of Physical Chemistry B : Volume 4, Issue 8, December 2010
Russian Journal of Physical Chemistry B : Volume 4, Issue 7, December 2010
Russian Journal of Physical Chemistry B : Volume 4, Issue 6, December 2010
Russian Journal of Physical Chemistry B : Volume 4, Issue 5, October 2010
Russian Journal of Physical Chemistry B : Volume 4, Issue 4, August 2010
Simple models of the density of vibrational states in polyatomic molecules
Nonequilibrium energy of Rayleigh waves in half-limited crystals with hot electrons close to the defect surface
The structure of fullerite C$_{60}$ intercalated with molecular oxygen
Formation of anions of nitroaromatic compounds in gases during UV laser irradiation
A two-center model of the concerted molecular decomposition of unsaturated compounds
Decomposition of nitromethane in shock waves: The primary stage and the kinetics of decomposition at pressures of about 40 atm
Existence of pressure driven wave
The structure of the thermal explosion limit with variable pre-exponential factor
One-dimensional model of steady filtration combustion front
Combustion of natural gas at the surface of a high-porosity metal matrix
Emission of carbon oxides during the combustion of lean methane-air premixed mixtures
An analysis of ionization kinetics models in a hypersonic flow past a cylinder
Modeling of HMX combustion
Mechanisms of the oxidation and combustion of normal alkanes: Transition from C$_{1}$–C$_{5}$ to C$_{6}$H$_{14}$
Mechanism of propagation of the combustion front in a Fe$_{2}$O$_{3}$ + 2Al + 30% Al$_{2}$O$_{3}$ mixture
Theory of critical conditions for mechanochemical explosion
The influence of viscous heating and wall thermal conditions on the thermal ignition of a poiseuille/couette reactive flow
Structure of soot clusters formed in a hydrocarbon flame under the action of the electric field of a DC corona discharge
Numerical simulation of laser ignition of a liquid fuel film
Thermal electron capture in organic compound-carbon dioxide gas mixtures
Content and activity of low-molecular antioxidants in food and medicinal plants
The influence of electric field on the mobility of holes in molecularly doped polycarbonate
Effect of crystallization water on the magnetic properties of crystals composed of complexes of chromium(III) oxalate with spiropyran cations of indoline series
Erratum: “Mechanisms of the Oxidation and Combustion of Normal Alkanes: Passage from C$_{1}$-C$_{4}$ to C$_{2}$H$_{5}$”
Russian Journal of Physical Chemistry B : Volume 4, Issue 3, June 2010
Russian Journal of Physical Chemistry B : Volume 4, Issue 2, April 2010
Russian Journal of Physical Chemistry B : Volume 4, Issue 1, February 2010
Russian Journal of Physical Chemistry B : Volume 3
Russian Journal of Physical Chemistry B : Volume 2
Russian Journal of Physical Chemistry B : Volume 1

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Existence of pressure driven wave

Content Provider Springer Nature Link
Author Krapivnik, N. Gol’dshtein, V.
Copyright Year 2010
Abstract The phenomenon of pressure driven flames in inert porous media filled with a flammable gaseous mixture is considered in the present work. We focus on the travelling wave solutions arising in the adiabatic model of this phenomenon that was developed and studied in [2, 3, 5, 6]. We start with the simplest possible model which describes the combustion process in inert porous media in the absence of inertial effects, hydraulic resistance, and thermo conductivity. For this model, the existence and uniqueness of the subsonic reaction wave were proved under reasonable assumptions. This simplest model is characterized by the linear dependence of friction force on the velocity of gaseous mixture.
Starting Page 574
Ending Page 579
Page Count 6
File Format PDF
ISSN 19907931
Journal Russian Journal of Physical Chemistry B
Volume Number 4
Issue Number 4
e-ISSN 19907923
Language English
Publisher SP MAIK Nauka/Interperiodica
Publisher Date 2010-11-04
Publisher Place Dordrecht
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Physical Chemistry
Content Type Text
Resource Type Article
Subject Physical and Theoretical Chemistry
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