Skip to main content
AkademIndex

Products

For developers

AkademBasesoonOpen API for the ecosystem
Article

Mathematical model for calculating the temperature field of a direct-flow drying drum

Akmaljon MamatovTashkent Institute of Textile and Light Industry, 5, Shokhjakhon str., 100100, Tashkent, UzbekistanА.П. ПарпиевTashkent Institute of Textile and Light Industry, 5, Shokhjakhon str., 100100, Tashkent, UzbekistanM ShorakhmedovaTashkent Institute of Textile and Light Industry, 5, Shokhjakhon str., 100100, Tashkent, Uzbekistan
ABI

Abstract

Abstract In this paper, one parabolic-type boundary value problem is solved for determining the temperature field of the raw cotton and air components in drum dryers. In the proposed model, convective heat transfer is used according to Newton’s law, the terms describing the evaporation of moisture from the components of raw cotton (seeds, fiber) and the influence of air velocity are taken into account. The resulting system of Galerkin’s differential equations is solved by the finite-difference method in time. It is shown that the approximate solution is estimated according to Galerkin in Sobolev space.The numerical results of the considered problem are obtained by the Bubnov–Galerkin method. A comparative analysis is carried out with experimental data. It is shown that the proposed mathematical model and its numerical algorithm adequately describe the drying process of raw cotton.

Topics

Identifiers

Citations and references

Cited by 06 references
Metrics — AkademScholar · Coming soon