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Numerical Study Of A Stepped Directional Barrier For Urban Noise Control

Título :
Numerical Study Of A Stepped Directional Barrier For Urban Noise Control
Autor :
Campillo Davo, Nuria
Fabra Rodríguez, Miguel
Campello Vicente, Héctor
Abellán López, David
Mora Saura, Elicio M.
Clar García, David
Peral Orts, Ramón
Editor :
European Acoustics Association (EAA)
Departamento:
Departamentos de la UMH::Ingeniería Mecánica y Energía
Fecha de publicación:
2025
URI :
https://hdl.handle.net/11000/39290
Resumen :
Acoustic barriers are structures used to block or reduce noise propagation, improving people’s quality of life. Barriers installed to mitigate traffic noise traditionally consist of continuously installed acoustic panels. In contrast, this work proposes the development of a directional barrier consisting of discrete cylindrical elements of stepped height distributed in the form of a sonic crystal. The barrier is designed to suppress transversely especially the frequency of 1000 Hz, the frequency at which the sound peak of rolling noise occurs. In order to test the sound effect of this barrier, numerical simulations of acoustic propagation are performed using FEM/BEM. The final objective aims to develop a sound barrier for application in urban environments that fulfils a dual application: mitigating noise pollution, but allowing a certain directivity of the noise from the transit of a vehicle to act as an acoustic warning element for pedestrians.
Palabras clave/Materias:
noise barrier
tyre road noise
sonic crystal
electric vehicle
traffic noise
Área de conocimiento :
CDU: Ciencias aplicadas: Ingeniería. Tecnología
Tipo de documento :
info:eu-repo/semantics/article
Derechos de acceso:
info:eu-repo/semantics/openAccess
Attribution-NonCommercial-NoDerivatives 4.0 Internacional
DOI :
https://www.doi.org/10.61782/fa.2025.0636
Publicado en:
Proceedings of Forum Acusticum Euronoise 2025. Forum Acusticum Euronoise 2025, 23-26 Jun 2025, Malaga, Spain
Nombre Congreso:
11th Convention of the European Acoustics Association. Forum Acusticum EuroNoise 2025
Aparece en las colecciones:
Artículos Ingeniería Mecánica y Energía



Creative Commons La licencia se describe como: Atribución-NonComercial-NoDerivada 4.0 Internacional.