Design and analysis of conceptual acoustic metamaterials applied to mitigating cooling fan noise for heavy-duty vehicles
Paper in proceeding, 2024

The noise generated from cooling fans in heavy-duty vehicles like trucks poses challenges regarding environmental pollution and overall user comfort. To solve this problem, this study develops an acoustic metamaterial (AMM) that is constructed with small Helmholtz resonators in two layers. This concept can attenuate the noise in a broad frequency range. Furthermore, the particle swarm optimization (PSO) algorithm based on artificial intelligence (AI) is used to optimize the AMM structure. The key design parameters are discussed and analyzed. The installation strategies are put forth to examine the performance of the AMM. The proposed metamaterials, combined with the installation strategies, are numerically simulated using the finite element method. The results show that the current AMM is effective in reducing both tonal and broadband noise of interest. The findings shed light on the development of acoustic metamaterials for cooling-fan noise reduction in heavy-duty vehicles.

Author

Wei Na

Volvo Group

Chenya Ji

Chalmers, Mechanics and Maritime Sciences (M2), Marine Technology

Prajwal Sunil Reddy

Chalmers, Mechanics and Maritime Sciences (M2), Marine Technology

Christina Keulemans Westlin

Volvo Group

Sofia Luvö

Volvo Group

Huadong Yao

Chalmers, Mechanics and Maritime Sciences (M2), Marine Technology

Inter Noise 2024

2024-3097

Inter Noise 2024
Nantes, ,

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Driving Forces

Sustainable development

Innovation and entrepreneurship

Areas of Advance

Transport

Energy

Subject Categories

Applied Mechanics

Vehicle Engineering

Fluid Mechanics and Acoustics

More information

Latest update

4/27/2024