EXPERIMENTAL COLMATATION INVESTIGATION OF FINELY-DISPERSED GAS-FLOW PARTICLES IN HIGHLY-POROUS MATERIALS UNDER INFLUENCE OF ELECTRIC FIELD

The paper reveals that the highest colmatation efficiency of charged and neutral particles is achieved in a polarizing electrostatic filter with a dielectric filter material which is placed in an electric field of high intensity created by surrounding metal electrodes.  Due to polarization of dielec...

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Main Authors: M. V. Tumilovich, L. P. Pilinevich, V. I. Baikov, A. E. Galkin, T. V. Sidorovich
Format: Article
Language:Russian
Published: Belarusian National Technical University 2013-08-01
Series:Nauka i Tehnika
Online Access:https://sat.bntu.by/jour/article/view/242
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author M. V. Tumilovich
L. P. Pilinevich
V. I. Baikov
A. E. Galkin
T. V. Sidorovich
author_facet M. V. Tumilovich
L. P. Pilinevich
V. I. Baikov
A. E. Galkin
T. V. Sidorovich
author_sort M. V. Tumilovich
collection DOAJ
description The paper reveals that the highest colmatation efficiency of charged and neutral particles is achieved in a polarizing electrostatic filter with a dielectric filter material which is placed in an electric field of high intensity created by surrounding metal electrodes.  Due to polarization of dielectric jumpers (dipole formation) strong electric charges are initiated on their surface and in consequence of these charges forces of Coulombic and induction particle settling are dominating there. These forces are considered as the most efficient mechanisms for settling of dielectric and electrically-conductive finely-dispersed particles.
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spelling doaj.art-afd7e4276db7482b864065bbe1848f582022-12-22T04:31:35ZrusBelarusian National Technical UniversityNauka i Tehnika2227-10312414-03922013-08-01042227235EXPERIMENTAL COLMATATION INVESTIGATION OF FINELY-DISPERSED GAS-FLOW PARTICLES IN HIGHLY-POROUS MATERIALS UNDER INFLUENCE OF ELECTRIC FIELDM. V. Tumilovich0L. P. Pilinevich1V. I. Baikov2A. E. Galkin3T. V. Sidorovich4Belarusian National Technical UniversityBelarusian State University of Informatics and RadioelectronicsA.V. Luikov Heat and Mass Transfer Institute of NAS of BelarusMinskExpoA.V. Luikov Heat and Mass Transfer Institute of NAS of BelarusThe paper reveals that the highest colmatation efficiency of charged and neutral particles is achieved in a polarizing electrostatic filter with a dielectric filter material which is placed in an electric field of high intensity created by surrounding metal electrodes.  Due to polarization of dielectric jumpers (dipole formation) strong electric charges are initiated on their surface and in consequence of these charges forces of Coulombic and induction particle settling are dominating there. These forces are considered as the most efficient mechanisms for settling of dielectric and electrically-conductive finely-dispersed particles.https://sat.bntu.by/jour/article/view/242
spellingShingle M. V. Tumilovich
L. P. Pilinevich
V. I. Baikov
A. E. Galkin
T. V. Sidorovich
EXPERIMENTAL COLMATATION INVESTIGATION OF FINELY-DISPERSED GAS-FLOW PARTICLES IN HIGHLY-POROUS MATERIALS UNDER INFLUENCE OF ELECTRIC FIELD
Nauka i Tehnika
title EXPERIMENTAL COLMATATION INVESTIGATION OF FINELY-DISPERSED GAS-FLOW PARTICLES IN HIGHLY-POROUS MATERIALS UNDER INFLUENCE OF ELECTRIC FIELD
title_full EXPERIMENTAL COLMATATION INVESTIGATION OF FINELY-DISPERSED GAS-FLOW PARTICLES IN HIGHLY-POROUS MATERIALS UNDER INFLUENCE OF ELECTRIC FIELD
title_fullStr EXPERIMENTAL COLMATATION INVESTIGATION OF FINELY-DISPERSED GAS-FLOW PARTICLES IN HIGHLY-POROUS MATERIALS UNDER INFLUENCE OF ELECTRIC FIELD
title_full_unstemmed EXPERIMENTAL COLMATATION INVESTIGATION OF FINELY-DISPERSED GAS-FLOW PARTICLES IN HIGHLY-POROUS MATERIALS UNDER INFLUENCE OF ELECTRIC FIELD
title_short EXPERIMENTAL COLMATATION INVESTIGATION OF FINELY-DISPERSED GAS-FLOW PARTICLES IN HIGHLY-POROUS MATERIALS UNDER INFLUENCE OF ELECTRIC FIELD
title_sort experimental colmatation investigation of finely dispersed gas flow particles in highly porous materials under influence of electric field
url https://sat.bntu.by/jour/article/view/242
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AT aegalkin experimentalcolmatationinvestigationoffinelydispersedgasflowparticlesinhighlyporousmaterialsunderinfluenceofelectricfield
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