Volume 97,   №7

HEAT AND MASS TRANSFER IN A LOCAL ENCLOSED OPERATING ZONE UNDER RADIANT HEATING CONDITIONS



The paper presents the results of mathematical simulation of the processes of heat transfer and diff usion of natural gas released during combustion of natural gas in a gas infrared emitter burner, which is a source of heat and carbon dioxide supplied to the local operating zone of a large-sized production area. Numerical studies are carried out taking into account the infl uence of the air exchange systems on the heat and mass transfer processes in the room and the equipment located in it. The problem is solved in a fl at formulation using the approximation of the k–ε model of turbulence for the fl ow of a gas mixture in the local operating zone and its small vicinity on supply of a relatively cold "fresh" air from the air exchange system. The concentration fi elds of CO2 and the distribution of carbon dioxide values in a locally enclosed small-sized operating area showed an impact of the enclosure of the CO2 concentration and air exchange intensity. A signifi cant infl uence of local baffl es on the temperature fi elds of operating zones and intensity of air circulation in such zones was also established. The possibility of controlling the composition and temperature of air in a local operating zone by varying the sizes and materials of the local enclosure was substantiated
The paper presents the results of mathematical simulation of the processes of heat transfer and diff usion of natural gas released during combustion of natural gas in a gas infrared emitter burner, which is a source of heat and carbon dioxide supplied to the local operating zone of a large-sized production area. Numerical studies are carried out taking into account the infl uence of the air exchange systems on the heat and mass transfer processes in the room and the equipment located in it. The problem is solved in a fl at formulation using the approximation of the k–ε model of turbulence for the fl ow of a gas mixture in the local operating zone and its small vicinity on supply of a relatively cold "fresh" air from the air exchange system. The concentration fi elds of CO2 and the distribution of carbon dioxide values in a locally enclosed small-sized operating area showed an impact of the enclosure of the CO2 concentration and air exchange intensity. A signifi cant infl uence of local baffl es on the temperature fi elds of operating zones and intensity of air circulation in such zones was also established. The possibility of controlling the composition and temperature of air in a local operating zone by varying the sizes and materials of the local enclosure was substantiated

Author:  G. V. Kuznetsov, B. V. Borisov, V. I. Maksimov, T. A. Nagornova, S. O. Salagaev, F. Yu. Salikhov
Keywords:  gas infrared emitter, temperature regime, CO2 concentration fi elds, local enclosure, air exchange system
Page:  1688

G. V. Kuznetsov, B. V. Borisov, V. I. Maksimov, T. A. Nagornova, S. O. Salagaev, F. Yu. Salikhov .  HEAT AND MASS TRANSFER IN A LOCAL ENCLOSED OPERATING ZONE UNDER RADIANT HEATING CONDITIONS //Journal of engineering physics and thermophysics. . Volume 97, №7. P. 1688 .


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