Analysis of intensification methods of heat and mass transfer in the drying process and dewatering features of thermolabile organic materials

The traditional ways of intensification of heat and mass transfer in drying materials are analyzed in the article. Part of the above methods of intensification is implemented in the cameras of compatible processes. Construction analysis of compatible processes showed that in order to implement act...

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Main Author: Andrew Lyashenko
Format: Article
Language:English
Published: PC Technology Center 2015-07-01
Series:Tehnologìčnij Audit ta Rezervi Virobnictva
Subjects:
Online Access:http://journals.uran.ua/tarp/article/view/47597
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spelling doaj-3ff702ba07ad4c2aa96924194fe3eccd2020-11-24T22:06:35ZengPC Technology CenterTehnologìčnij Audit ta Rezervi Virobnictva2226-37802312-83722015-07-0144(24)161910.15587/2312-8372.2015.4759747597Analysis of intensification methods of heat and mass transfer in the drying process and dewatering features of thermolabile organic materialsAndrew Lyashenko0Institute of Engineering Thermophysics of the National Academy of Sciences of Ukraine, str. Zhelyabova, 2a, Kyiv, Ukraine, 03680The traditional ways of intensification of heat and mass transfer in drying materials are analyzed in the article. Part of the above methods of intensification is implemented in the cameras of compatible processes. Construction analysis of compatible processes showed that in order to implement active hydrodynamic regime in the chamber during processing high-wet thermally labile materials such as chicken manure, sludge after fermentation process and so on is most advisable to use a mechanical rotor rotating along the axis of the camera. This results in generation of a weighted layer material, separation of large pieces, swirl of the gas flow, reducing adhesion to surfaces of working chamber, constant updating of heat transfer surface. The author has experimentally proved that you can get these orders of magnitude using a method of compatible drying and dispersion processes by mechanical rotor drying thermally labile high-wet materials: - heat-transfer coefficient within 900-1200 W/(m2·deg.); - initial coolant temperature within 600-800 ºC; - number of heat for evaporation within 3500-4000 kJ/kg of evaporated water; - average camera strain on evaporated moisture 350-400 kg/(m³·h).http://journals.uran.ua/tarp/article/view/47597dryingintensificationthermolabile materialcameracompatible processmachine rotor
collection DOAJ
language English
format Article
sources DOAJ
author Andrew Lyashenko
spellingShingle Andrew Lyashenko
Analysis of intensification methods of heat and mass transfer in the drying process and dewatering features of thermolabile organic materials
Tehnologìčnij Audit ta Rezervi Virobnictva
drying
intensification
thermolabile material
camera
compatible process
machine rotor
author_facet Andrew Lyashenko
author_sort Andrew Lyashenko
title Analysis of intensification methods of heat and mass transfer in the drying process and dewatering features of thermolabile organic materials
title_short Analysis of intensification methods of heat and mass transfer in the drying process and dewatering features of thermolabile organic materials
title_full Analysis of intensification methods of heat and mass transfer in the drying process and dewatering features of thermolabile organic materials
title_fullStr Analysis of intensification methods of heat and mass transfer in the drying process and dewatering features of thermolabile organic materials
title_full_unstemmed Analysis of intensification methods of heat and mass transfer in the drying process and dewatering features of thermolabile organic materials
title_sort analysis of intensification methods of heat and mass transfer in the drying process and dewatering features of thermolabile organic materials
publisher PC Technology Center
series Tehnologìčnij Audit ta Rezervi Virobnictva
issn 2226-3780
2312-8372
publishDate 2015-07-01
description The traditional ways of intensification of heat and mass transfer in drying materials are analyzed in the article. Part of the above methods of intensification is implemented in the cameras of compatible processes. Construction analysis of compatible processes showed that in order to implement active hydrodynamic regime in the chamber during processing high-wet thermally labile materials such as chicken manure, sludge after fermentation process and so on is most advisable to use a mechanical rotor rotating along the axis of the camera. This results in generation of a weighted layer material, separation of large pieces, swirl of the gas flow, reducing adhesion to surfaces of working chamber, constant updating of heat transfer surface. The author has experimentally proved that you can get these orders of magnitude using a method of compatible drying and dispersion processes by mechanical rotor drying thermally labile high-wet materials: - heat-transfer coefficient within 900-1200 W/(m2·deg.); - initial coolant temperature within 600-800 ºC; - number of heat for evaporation within 3500-4000 kJ/kg of evaporated water; - average camera strain on evaporated moisture 350-400 kg/(m³·h).
topic drying
intensification
thermolabile material
camera
compatible process
machine rotor
url http://journals.uran.ua/tarp/article/view/47597
work_keys_str_mv AT andrewlyashenko analysisofintensificationmethodsofheatandmasstransferinthedryingprocessanddewateringfeaturesofthermolabileorganicmaterials
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