We demonstrate a duct muffler design that operates in the low-frequency range (<2000 Hz). The device contained a pair of coupled annular Helmholtz resonators (HRs) and porous material stuffing. HRs were installed as side branches of a circular tube to avoid affecting the ventilation. Porous materials were employed to form an asymmetric intrinsic loss in the HR pair and enable the device to achieve perfect sound absorption. An analytical model based on the temporal coupled-mode theory was derived, and a numerical simulation technique for structural design was introduced and verified. The experimental study demonstrated the effectiveness of the design methodology and illustrated that the device can achieve near-perfect sound absorption in the...
International audienceAn acoustic metamaterial absorber comprised of periodically distributed caviti...
A theoretical prediction is undertaken for low-frequency duct noise control by a compact reactive mu...
With the development of the industry and the society, noise pollution becomes increasingly severe, e...
We demonstrate a duct muffler design that operates in the low-frequency range (<2000 Hz). The device...
It is well known that a large air space is needed when we absorb sound in low frequencies by using p...
It is well known that a large air space is needed when we absorb sound in low frequencies by using p...
International audienceClassical porous materials are extensively used in ducted systems such as heat...
The sound transmission loss across a duct muffler in the form of a linear array of 11 narrow sidebra...
PolyU Library Call No.: [THS] LG51 .H577P BSE 2016 Shixix, 129 pages :illustrationsThe use of multip...
In this work, a low-frequency, open, sound-insulation barrier, composed of a single layer of periodi...
Low-frequency duct noise is difficult to deal with by passive methods such as porous duct lining. Re...
The objective of this doctoral thesis is to study three different innovative noise control technique...
In this study, multi band sound absorbing structure with double resonant porous structure employing ...
A new duct noise control device is introduced based on the mechanism of human middle ear which funct...
Helmholtz resonators are commonly used as narrowband sound absorbers in room acoustics applications....
International audienceAn acoustic metamaterial absorber comprised of periodically distributed caviti...
A theoretical prediction is undertaken for low-frequency duct noise control by a compact reactive mu...
With the development of the industry and the society, noise pollution becomes increasingly severe, e...
We demonstrate a duct muffler design that operates in the low-frequency range (<2000 Hz). The device...
It is well known that a large air space is needed when we absorb sound in low frequencies by using p...
It is well known that a large air space is needed when we absorb sound in low frequencies by using p...
International audienceClassical porous materials are extensively used in ducted systems such as heat...
The sound transmission loss across a duct muffler in the form of a linear array of 11 narrow sidebra...
PolyU Library Call No.: [THS] LG51 .H577P BSE 2016 Shixix, 129 pages :illustrationsThe use of multip...
In this work, a low-frequency, open, sound-insulation barrier, composed of a single layer of periodi...
Low-frequency duct noise is difficult to deal with by passive methods such as porous duct lining. Re...
The objective of this doctoral thesis is to study three different innovative noise control technique...
In this study, multi band sound absorbing structure with double resonant porous structure employing ...
A new duct noise control device is introduced based on the mechanism of human middle ear which funct...
Helmholtz resonators are commonly used as narrowband sound absorbers in room acoustics applications....
International audienceAn acoustic metamaterial absorber comprised of periodically distributed caviti...
A theoretical prediction is undertaken for low-frequency duct noise control by a compact reactive mu...
With the development of the industry and the society, noise pollution becomes increasingly severe, e...