Volume 93,   №5

MATHEMATICAL SIMULATION OF THE HEAT AND MASS TRANSFER IN THE MOVEMENT OF LIQUID DROPLETS IN A GAS MEDIUM UNDER THE CONDITIONS OF THEIR INTENSE PHASE TRANSFORMATIONS



A physical and mathematical model of the movement of a liquid droplet in a high-temperature air fl ow has been formulated with regard for the main factors of this movement: the inertia of the droplet, its viscous friction, the surface tension of the liquid in it, the air drag, the gravity, lift, and Magnus forces acting on the droplet, its turbophoresis and thermophoresis, the convective heat fl ows inside the droplet, the turbulence and compressibility of the carrying medium, the concentration of the dispersed phase in it, the nonstationarity of the movement of the droplet, its phase transformations, the collisions of the droplet with the neighboring liquid droplets in the gas fl ow, the partial fragmentation of the droplet, and its breakdown. Numerical and experimental investigations of the infl uence of the indicated factors on the velocity of movement, the heating, and the intensity of evaporation of a liquid droplet in a high-temperature gas medium have been performed. The results of these investigations were generalized for determining the possible applications of the model developed.
 
 
Author:  D. V. Antonov, G. V. Kuznetsov, and P. A. Strizhak
Keywords:  heat and mass transfer, gas medium, liquid droplet, phase transformations, high-temperature heating, mathematical simulation
Page:  1055

D. V. Antonov, G. V. Kuznetsov, and P. A. Strizhak.  MATHEMATICAL SIMULATION OF THE HEAT AND MASS TRANSFER IN THE MOVEMENT OF LIQUID DROPLETS IN A GAS MEDIUM UNDER THE CONDITIONS OF THEIR INTENSE PHASE TRANSFORMATIONS //Journal of engineering physics and thermophysics. . Volume 93, №5. P. 1055.


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