Hybrid 3D Sound Intensity Measurements and Simulations Applied to a Truck Rear Axle
Abstract
This study presents a novel methodology for optimizing the acoustic performance of rotating machinery by combining scattered 3D sound intensity data with numerical simulations. The method is demonstrated on the rear axle of a truck. Using Scan&Paint 3D, sound intensity data is rapidly acquired over a large spatial area with the assistance of a 3D sound intensity probe and infrared stereo camera. The experimental data is then integrated into far-field radiation simulations, enabling detailed analysis of the acoustic behavior and accurate predictions of far-field sound radiation. This hybrid approach offers a significant advantage for assessing complex acoustic sources, allowing for quick and reliable evaluation of noise mitigation solutions.
CITATION
Fernández Comesaña, D., Vael, G., Robin, X., Orselli, J., & Schmal, J. (2025). Hybrid 3D sound intensity measurements and simulations applied to a truck rear axle. In Proceedings of the SAE Conference (Grand Rapids, MI, USA).
Scan&Paint 3D