Volume 89, №1
NUMERICAL SIMULATION OF HEAT AND MASS TRANSFER IN AN EJECTION APPARATUS
The results of numerical simulation of heat and mass transfer in an ejection apparatus during condensation of vapor–gas mixture components on cold brine droplets are presented. The local parameters of working flows were determined by solving a system of differential heat transfer equations with account for the hydrodynamic pattern. Calculations were carried out on the assumption that the liquid spray is directed horizontally. The Stefan formula has been derived with reference to a spherical coordinate system. The results of calculation of heat and mass transfer rates with and without regard for steam condensation jointly with hydrocarbon vapors are compared and analyzed. Estimation of the effect exerted by the apparatus and drip pan walls on the general process of heat and mass transfer was carried out. The results of simulation made it possible to quantitatively estimate the infl uence of the adopted thickness of the diffusional boundary layer on the vapor–air mixture cooling effect.
Author: M. M. Kologrivov and V. P. Buzovskii
Keywords: contact heat exchanger, heat and mass transfer, condensation, diffusion, ejection apparatus, vapor–gas mixture, brine droplets
Page: 167
M. M. Kologrivov and V. P. Buzovskii .
NUMERICAL SIMULATION OF HEAT AND MASS TRANSFER IN AN EJECTION APPARATUS //Journal of engineering physics and thermophysics.
. Volume 89, №1. P. 167.
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