Volume 93,   №5

NUMERICAL MODELING OF THE PROCESS OF DRYING BIOMATERIALS AFTER PULSED ELECTRIC FIELD TREATMENT USING A SYSTEM OF TEMPERATURE, MOISTURE, AND PRESSURE EQUATIONS



A new method is described to determine the kinetic coeffi cients for temperature, moisture, and pressure potentials based on experimental data of a curve for drying capillary-porous bodies. This method includes numerical modeling of the problem of calculating the potential of transfer of temperature, moisture, and pressure in the process of drying based on the procedure of using the fi nite element method in combination with the stepwise method of fi nite differences for a partial differential system, and an inverse problem formulation in the form of minimizing the residual function square from the obtained experimental curve of the moisture potential. Based on this method, the updated coeffi cients of kinetic potentials were found for many materials after pulsed electric fi eld treatment and dependence curves were restored for temperature and pressure potentials that were not observed in the experiment. The presented approach is quite useful for the study of the mechanism of a drying process with pulsed electric fi eld pretreatment, and for the explanation of the occurring effects, and the updated kinetic coeffi cients based on experimental data contribute to the substantiation of the processes occurring in the object of drying
 
 
Author:  I. A. Shorstkii, V. S. Kosachev, and E. P. Koshevoi
Keywords:  kinetic coeffi cient, inverse problem, heat and mass transfer, drying, potential, numerical modeling, pulsed electric fi eld
Page:  1285

I. A. Shorstkii, V. S. Kosachev, and E. P. Koshevoi .  NUMERICAL MODELING OF THE PROCESS OF DRYING BIOMATERIALS AFTER PULSED ELECTRIC FIELD TREATMENT USING A SYSTEM OF TEMPERATURE, MOISTURE, AND PRESSURE EQUATIONS //Journal of engineering physics and thermophysics. . Volume 93, №5. P. 1285.


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