Parametric study of quarter-wave resonators for sound-proofing building structures

This study investigates the parametric analysis of a quarter-wave resonator integrated into a brick structure for optimized acoustic isolation in buildings. Starting with a brick of 100 mm thickness and period, the quarter-wave resonator was designed and parametrized. The optimization process yielde...

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Main Authors: Idrissi Majid, Lemkalli Brahim, Mir Abdellah, Bouzid Abdenbi, Achaoui Younes
Format: Article
Language:English
Published: EDP Sciences 2025-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/01/e3sconf_icegc2024_00070.pdf
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author Idrissi Majid
Lemkalli Brahim
Mir Abdellah
Bouzid Abdenbi
Achaoui Younes
author_facet Idrissi Majid
Lemkalli Brahim
Mir Abdellah
Bouzid Abdenbi
Achaoui Younes
author_sort Idrissi Majid
collection DOAJ
description This study investigates the parametric analysis of a quarter-wave resonator integrated into a brick structure for optimized acoustic isolation in buildings. Starting with a brick of 100 mm thickness and period, the quarter-wave resonator was designed and parametrized. The optimization process yielded significant results, achieving an attenuation of approximately -87 dB with a bandgap width of 82%, surpassing the -72.55 dB attenuation provided by the mass law of the brick alone. These findings highlight the potential of the optimized resonator structure to enhance acoustic isolation, making it a promising solution for noise control in urban environments.
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institution Kabale University
issn 2267-1242
language English
publishDate 2025-01-01
publisher EDP Sciences
record_format Article
series E3S Web of Conferences
spelling doaj-art-98c533fe6c8f4d66ae71c99472d221c42025-02-05T10:46:25ZengEDP SciencesE3S Web of Conferences2267-12422025-01-016010007010.1051/e3sconf/202560100070e3sconf_icegc2024_00070Parametric study of quarter-wave resonators for sound-proofing building structuresIdrissi Majid0Lemkalli Brahim1Mir Abdellah2Bouzid Abdenbi3Achaoui Younes4Laboratory of Optics, Information Processing, Mechanics, Energetics and Electronics, Department of Physics, Moulay Ismail UniversityUniversité de Franche-Comté, Institute FEMTO-ST, CNRSDepartment of Physics, Moulay Ismail UniversityLaboratory of Optics, Information Processing, Mechanics, Energetics and Electronics, Department of Physics, Moulay Ismail UniversityLaboratory of Optics, Information Processing, Mechanics, Energetics and Electronics, Department of Physics, Moulay Ismail UniversityThis study investigates the parametric analysis of a quarter-wave resonator integrated into a brick structure for optimized acoustic isolation in buildings. Starting with a brick of 100 mm thickness and period, the quarter-wave resonator was designed and parametrized. The optimization process yielded significant results, achieving an attenuation of approximately -87 dB with a bandgap width of 82%, surpassing the -72.55 dB attenuation provided by the mass law of the brick alone. These findings highlight the potential of the optimized resonator structure to enhance acoustic isolation, making it a promising solution for noise control in urban environments.https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/01/e3sconf_icegc2024_00070.pdf
spellingShingle Idrissi Majid
Lemkalli Brahim
Mir Abdellah
Bouzid Abdenbi
Achaoui Younes
Parametric study of quarter-wave resonators for sound-proofing building structures
E3S Web of Conferences
title Parametric study of quarter-wave resonators for sound-proofing building structures
title_full Parametric study of quarter-wave resonators for sound-proofing building structures
title_fullStr Parametric study of quarter-wave resonators for sound-proofing building structures
title_full_unstemmed Parametric study of quarter-wave resonators for sound-proofing building structures
title_short Parametric study of quarter-wave resonators for sound-proofing building structures
title_sort parametric study of quarter wave resonators for sound proofing building structures
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/01/e3sconf_icegc2024_00070.pdf
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AT mirabdellah parametricstudyofquarterwaveresonatorsforsoundproofingbuildingstructures
AT bouzidabdenbi parametricstudyofquarterwaveresonatorsforsoundproofingbuildingstructures
AT achaouiyounes parametricstudyofquarterwaveresonatorsforsoundproofingbuildingstructures