3D modeling of electrocyclones with various flow swirling devices
3D modeling of electrocyclones with various flow swirling devices
The results of modeling of two electrocyclone designs are presented. The calculation was performed by finite-element method in a three-dimensional space. It is shown that axial electrocyclone has better hydraulic and electrical characteristics than ECV electro- cyclone.
cyclone, electrocyclone, electrostatic precipitator, gas purification
876-883
Titov, A.G.
15c44a5b-80ec-40df-96b6-d66d019d2b0e
Shrimpton, J.
9cf82d2e-2f00-4ddf-bd19-9aff443784af
March 2020
Titov, A.G.
15c44a5b-80ec-40df-96b6-d66d019d2b0e
Shrimpton, J.
9cf82d2e-2f00-4ddf-bd19-9aff443784af
Titov, A.G. and Shrimpton, J.
(2020)
3D modeling of electrocyclones with various flow swirling devices.
Chemical and Petroleum engineering, 55 (11-12), .
(doi:10.1007/s10556-020-00707-w).
Abstract
The results of modeling of two electrocyclone designs are presented. The calculation was performed by finite-element method in a three-dimensional space. It is shown that axial electrocyclone has better hydraulic and electrical characteristics than ECV electro- cyclone.
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2020_jour_Electrocyclone
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e-pub ahead of print date: 19 March 2020
Published date: March 2020
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Funding Information:
This work was carried out with the financial support of Decision No. 211 of the President of the Russian Federation, Contract No. 02.A03.21.0006.
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© 2020, Springer Science+Business Media, LLC, part of Springer Nature.
Keywords:
cyclone, electrocyclone, electrostatic precipitator, gas purification
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Local EPrints ID: 444562
URI: http://eprints.soton.ac.uk/id/eprint/444562
PURE UUID: efc17b35-d141-4c11-b4bd-498e822a67b0
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Date deposited: 26 Oct 2020 17:30
Last modified: 05 Jun 2024 17:44
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Author:
A.G. Titov
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