Decay of the melt stream during dispersion in granulation devices

The aim of the article is a theoretical description and experimental study of the melt jet expiration process from a perforated shell of a vibrating granulator. Mathematical modeling of hydrodynamic flows was carried out based on the points of classical fluid and gas mechanics and technical hydromec...

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Main Authors: Sklabinskiy Vsevolod I., Artyukhov Artem E., Kononenko Mykola P., Krmela Jan
Format: Article
Language:English
Published: Association of Chemical Engineers of Serbia 2019-01-01
Series:Hemijska Industrija
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0367-598X/2019/0367-598X1900025S.pdf
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spelling doaj-d3709251f09144a1a52df7ead4845cd02020-11-24T22:10:26ZengAssociation of Chemical Engineers of SerbiaHemijska Industrija 0367-598X2217-74262019-01-0173529531010.2298/HEMIND190422025S0367-598X1900025SDecay of the melt stream during dispersion in granulation devicesSklabinskiy Vsevolod I.0Artyukhov Artem E.1Kononenko Mykola P.2Krmela Jan3Sumy State University, Sumy, UkraineSumy State University, Sumy, UkraineSumy State University, Sumy, UkraineAlexander Dubcek University of Trencin, Trencin, Slovak RepublicThe aim of the article is a theoretical description and experimental study of the melt jet expiration process from a perforated shell of a vibrating granulator. Mathematical modeling of hydrodynamic flows was carried out based on the points of classical fluid and gas mechanics and technical hydromechanics. Reliability of the obtained experimental results is based on the application of time-tested in practice methods. Hydrodynamic properties of the liquid jet outflow were obtained. The presented mathematical model allows calculation of the radial component of the jet outflow velocity, as well as determination of the influences of physical and chemical properties of the liquid and the outflow hole diameter on the jet length and flow velocity along the axis to its disintegration into separated drops. The developed mathematical model extended with the theoretical description of the melt dispersion process from rotating perforated shells allowed us to improve design of the granulator to stabilize hydrodynamic parameters of the melt movement. The nitrogen fertilizers melt disperser was investigated regarding industrial-scale production and operating parameters of the process of jet decay into drops, drop size and monodispersity level were optimized.http://www.doiserbia.nb.rs/img/doi/0367-598X/2019/0367-598X1900025S.pdfjet decayvibration granulatorhydrodynamic of flow movementmelt dispersion processrotating perforated shell
collection DOAJ
language English
format Article
sources DOAJ
author Sklabinskiy Vsevolod I.
Artyukhov Artem E.
Kononenko Mykola P.
Krmela Jan
spellingShingle Sklabinskiy Vsevolod I.
Artyukhov Artem E.
Kononenko Mykola P.
Krmela Jan
Decay of the melt stream during dispersion in granulation devices
Hemijska Industrija
jet decay
vibration granulator
hydrodynamic of flow movement
melt dispersion process
rotating perforated shell
author_facet Sklabinskiy Vsevolod I.
Artyukhov Artem E.
Kononenko Mykola P.
Krmela Jan
author_sort Sklabinskiy Vsevolod I.
title Decay of the melt stream during dispersion in granulation devices
title_short Decay of the melt stream during dispersion in granulation devices
title_full Decay of the melt stream during dispersion in granulation devices
title_fullStr Decay of the melt stream during dispersion in granulation devices
title_full_unstemmed Decay of the melt stream during dispersion in granulation devices
title_sort decay of the melt stream during dispersion in granulation devices
publisher Association of Chemical Engineers of Serbia
series Hemijska Industrija
issn 0367-598X
2217-7426
publishDate 2019-01-01
description The aim of the article is a theoretical description and experimental study of the melt jet expiration process from a perforated shell of a vibrating granulator. Mathematical modeling of hydrodynamic flows was carried out based on the points of classical fluid and gas mechanics and technical hydromechanics. Reliability of the obtained experimental results is based on the application of time-tested in practice methods. Hydrodynamic properties of the liquid jet outflow were obtained. The presented mathematical model allows calculation of the radial component of the jet outflow velocity, as well as determination of the influences of physical and chemical properties of the liquid and the outflow hole diameter on the jet length and flow velocity along the axis to its disintegration into separated drops. The developed mathematical model extended with the theoretical description of the melt dispersion process from rotating perforated shells allowed us to improve design of the granulator to stabilize hydrodynamic parameters of the melt movement. The nitrogen fertilizers melt disperser was investigated regarding industrial-scale production and operating parameters of the process of jet decay into drops, drop size and monodispersity level were optimized.
topic jet decay
vibration granulator
hydrodynamic of flow movement
melt dispersion process
rotating perforated shell
url http://www.doiserbia.nb.rs/img/doi/0367-598X/2019/0367-598X1900025S.pdf
work_keys_str_mv AT sklabinskiyvsevolodi decayofthemeltstreamduringdispersioningranulationdevices
AT artyukhovarteme decayofthemeltstreamduringdispersioningranulationdevices
AT kononenkomykolap decayofthemeltstreamduringdispersioningranulationdevices
AT krmelajan decayofthemeltstreamduringdispersioningranulationdevices
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