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Автор Soininen, Mauri
Дата выпуска 1990
dc.description AbstractAn analytical model for the process is developed. The thermal diffusivity of the drying slabs is assumed infinite and the moisture diffusivity constant during the entire drying process.With specified initial and boundary conditions, the mathematical model yields a two-part solution for the diffusion equation. The first part is valid for the initial drying during which the surface moisture content exceeds the value of fiber saturation. This part of the solution is used until the surface moisture content drops to the fiber saturation value. The moisture profile at the end of this period is used as the initial condition for the second period of drying which takes place under hygroscopic conditions.Two simplifying assumptions are adapted for the hygroscopic region: 1. The dependence between the surface temperature and the moisture content is linear. 2. Constant (average) absorption heat is used during this second drying period.For both parts of the solution, the surface moisture gradient is proportional to the local temperature difference between the drying air and the slab surface. This temperature difference can be expressed by means of a water mass balance equation for the part of the dryer between the slab in-feed and the point considered and by using the thermodynamic properties of the humid air.
Формат application.pdf
Издатель Taylor & Francis Group
Копирайт Copyright Taylor and Francis Group, LLC
Тема drying simulation
Тема Laplace transforms
Тема hygroscopic materials
Тема fiber saturation point
Тема moisture profile
Название A MATHEMATICAL MODEL FOR PARALLEL FLOW DRYER FOR SLABS WITH HIGH THERMAL DIFFUSIVITY
Тип research-article
DOI 10.1080/07373939008959863
Electronic ISSN 1532-2300
Print ISSN 0737-3937
Журнал Drying Technology
Том 8
Первая страница 41
Последняя страница 59
Аффилиация Soininen, Mauri; Teollisuusmittaus Oy
Выпуск 1

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