Utilization of Electric Metal Mesh Filter for Submicron Particles Collection
This paper aims to explore experimentally the effects of geometric parameters on the collection efficiency of submicron particles using a developed filter assembly. The studied parameters include mesh size and fiber diameter of a metallic grid, as well as the number of the grids and the spacing betw...
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Published in | Conference record of the Industry Applications Conference pp. 1 - 4 |
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Main Authors | , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
20.10.2024
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Subjects | |
Online Access | Get full text |
ISSN | 2576-702X |
DOI | 10.1109/IAS55788.2024.11023782 |
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Abstract | This paper aims to explore experimentally the effects of geometric parameters on the collection efficiency of submicron particles using a developed filter assembly. The studied parameters include mesh size and fiber diameter of a metallic grid, as well as the number of the grids and the spacing between them. Results indicate that filtration efficiency can be significantly enhanced by reducing mesh size, fiber diameter, and grid spacing. Furthermore, adding more layers of grids can also improve the filter's performance. This investigation highlights the complex relationship between geometric parameters and the filtration efficiency, offering key insights essential for optimizing filter's design and effectiveness. |
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AbstractList | This paper aims to explore experimentally the effects of geometric parameters on the collection efficiency of submicron particles using a developed filter assembly. The studied parameters include mesh size and fiber diameter of a metallic grid, as well as the number of the grids and the spacing between them. Results indicate that filtration efficiency can be significantly enhanced by reducing mesh size, fiber diameter, and grid spacing. Furthermore, adding more layers of grids can also improve the filter's performance. This investigation highlights the complex relationship between geometric parameters and the filtration efficiency, offering key insights essential for optimizing filter's design and effectiveness. |
Author | Zouzou, Noureddine Zouaghi, Ayyoub Sayoud, Mohamed Akram |
Author_xml | – sequence: 1 givenname: Mohamed Akram surname: Sayoud fullname: Sayoud, Mohamed Akram email: mohamed.akram.sayoud@univ-poitiers.fr organization: Institut Pprime, CNRS, Université de Poitiers, ISAE-ENSMA,Futuroscope,France – sequence: 2 givenname: Noureddine surname: Zouzou fullname: Zouzou, Noureddine email: noureddine.zouzou@univ-poitiers.fr organization: Institut Pprime, CNRS, Université de Poitiers, ISAE-ENSMA,Futuroscope,France – sequence: 3 givenname: Ayyoub surname: Zouaghi fullname: Zouaghi, Ayyoub email: ayyoub.zouaghi@ec-lyon.fr organization: Universite Claude Bernard Lyon 1, CNRS, Ampère, UMR5005,Ecole Centrale de Lyon, INSA Lyon,Ecully,France,69130 |
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Snippet | This paper aims to explore experimentally the effects of geometric parameters on the collection efficiency of submicron particles using a developed filter... |
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SubjectTerms | Air cleaners Assembly Collection efficiency Electric mesh filter Filtration Geometric parameters Industry applications Media Metallic grid Metals Submicron particles Trajectory Voltage |
Title | Utilization of Electric Metal Mesh Filter for Submicron Particles Collection |
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