Study of Diffusion Instability in Ternary Gas Mixtures under Nonisothermal Conditions

The main objective of this article is to investigate the effect of heating (from below or above) on stability of mechanical equilibrium in binary and ternary gas mixtures. Three series of experiments on instabilities in are reported gaseous diffusion. In one series occurrence of convective flows un...

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Main Authors: Kossov Vladimir, Zhavrin Yuri, Fedorenko Olga
Format: Article
Language:English
Published: EDP Sciences 2014-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20141802002
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spelling doaj-7df0234489c14a959eb4d2083d315d192021-03-02T09:47:22ZengEDP SciencesMATEC Web of Conferences2261-236X2014-01-01180200210.1051/matecconf/20141802002matecconf_heat2014_02002Study of Diffusion Instability in Ternary Gas Mixtures under Nonisothermal ConditionsKossov Vladimir0Zhavrin Yuri1Fedorenko Olga2Abai Kazakh National Pedagogical UniversityResearch Institute of Experimental and Theoretical Physics, Al-Farabi Kazakh National UniversityResearch Institute of Experimental and Theoretical Physics, Al-Farabi Kazakh National University The main objective of this article is to investigate the effect of heating (from below or above) on stability of mechanical equilibrium in binary and ternary gas mixtures. Three series of experiments on instabilities in are reported gaseous diffusion. In one series occurrence of convective flows under diffusive mixing are investigated in the systems N2O – CO2 and CO2 – N2O heated from below. The temperature difference when the transition between the diffusion and the convective processes happen is higher at the bottom arrangement of N2O. In the second series the influence of temperature difference are studied in the mixture 0.279 C3H8 + 0.721CO2 – CO2. The rate of convective mass transfer increases sufficiently. In the third series the convective mass transfer is examined in the system 0.4736 He + 0.5264 Ar – N2 heated from above. The experimental results reveal that the intensity of unstable process decreases until 420.0 K reaching a minimum value. Linear stability theory is applied to determine the boundary of transition from the state of diffusion to the region of convection. The results of numerical study are in good agreement with the experiments. http://dx.doi.org/10.1051/matecconf/20141802002
collection DOAJ
language English
format Article
sources DOAJ
author Kossov Vladimir
Zhavrin Yuri
Fedorenko Olga
spellingShingle Kossov Vladimir
Zhavrin Yuri
Fedorenko Olga
Study of Diffusion Instability in Ternary Gas Mixtures under Nonisothermal Conditions
MATEC Web of Conferences
author_facet Kossov Vladimir
Zhavrin Yuri
Fedorenko Olga
author_sort Kossov Vladimir
title Study of Diffusion Instability in Ternary Gas Mixtures under Nonisothermal Conditions
title_short Study of Diffusion Instability in Ternary Gas Mixtures under Nonisothermal Conditions
title_full Study of Diffusion Instability in Ternary Gas Mixtures under Nonisothermal Conditions
title_fullStr Study of Diffusion Instability in Ternary Gas Mixtures under Nonisothermal Conditions
title_full_unstemmed Study of Diffusion Instability in Ternary Gas Mixtures under Nonisothermal Conditions
title_sort study of diffusion instability in ternary gas mixtures under nonisothermal conditions
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2014-01-01
description The main objective of this article is to investigate the effect of heating (from below or above) on stability of mechanical equilibrium in binary and ternary gas mixtures. Three series of experiments on instabilities in are reported gaseous diffusion. In one series occurrence of convective flows under diffusive mixing are investigated in the systems N2O – CO2 and CO2 – N2O heated from below. The temperature difference when the transition between the diffusion and the convective processes happen is higher at the bottom arrangement of N2O. In the second series the influence of temperature difference are studied in the mixture 0.279 C3H8 + 0.721CO2 – CO2. The rate of convective mass transfer increases sufficiently. In the third series the convective mass transfer is examined in the system 0.4736 He + 0.5264 Ar – N2 heated from above. The experimental results reveal that the intensity of unstable process decreases until 420.0 K reaching a minimum value. Linear stability theory is applied to determine the boundary of transition from the state of diffusion to the region of convection. The results of numerical study are in good agreement with the experiments.
url http://dx.doi.org/10.1051/matecconf/20141802002
work_keys_str_mv AT kossovvladimir studyofdiffusioninstabilityinternarygasmixturesundernonisothermalconditions
AT zhavrinyuri studyofdiffusioninstabilityinternarygasmixturesundernonisothermalconditions
AT fedorenkoolga studyofdiffusioninstabilityinternarygasmixturesundernonisothermalconditions
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