Car door and window seals have been proven to be of utmost importance to reduce aerodynamic noise, both through direct transmission and through their role as boundary conditions of the other transmitting elements (car doors and windows). As consequence, their design has become of great relevance when it comes to passenger comfort optimization. However, the traditional method for their conception, based on a trial and error approach through wind-tunnel testing, has been found to be insufficient and costly. A different approach is contemplated in this dissertation, through the development of a model capable of predicting sound transmission through seals and into the vehicle cavity, for its subsequent application into an optimization procedure...
Abstract: The noise and vibration signatures of automotive passenger cabins contribute substantially...
Environmental noise and noise in the interiors, is a major concern. Companies, in sectors as varied ...
Covention CIFRE - Airbus Operations SAS, Cotutelle France-QuébecThe prediction of aircraft interior ...
Car door and window seals have been proven to be of utmost importance to reduce aerodynamic noise, b...
One dominant “wind noise” generating mechanism in road vehicles is the interaction between turbulent...
Andreas Hazir is investigating the door seal contribution to the interior noise level of production ...
Due to the increasing concern with the acoustic environment within automotive vehicles, there is an ...
Prevention of transmitted sound through car doors is a critical issue; as doors are the weakest part...
September 2014, 111 pages Doors are the weakest parts of the buildings in terms of sound transmissio...
In this study, the effect of weatherstrip seals on panel vibrations and structure borne noise is stu...
Double-wall structures are widely used in noise control due to their superiority over single-leaf st...
A new method is proposed to predict the noise radiated in the high frequency range by a structure vi...
This paper presents a rigid walled car cabin model to predict the acoustic effects of vehicle interi...
In this study, the effect of weatherstrip seals on panel vibrations and structure borne noise is stu...
The door closing action is a recurrent situation when using a vehicle, and its sound is therefore a ...
Abstract: The noise and vibration signatures of automotive passenger cabins contribute substantially...
Environmental noise and noise in the interiors, is a major concern. Companies, in sectors as varied ...
Covention CIFRE - Airbus Operations SAS, Cotutelle France-QuébecThe prediction of aircraft interior ...
Car door and window seals have been proven to be of utmost importance to reduce aerodynamic noise, b...
One dominant “wind noise” generating mechanism in road vehicles is the interaction between turbulent...
Andreas Hazir is investigating the door seal contribution to the interior noise level of production ...
Due to the increasing concern with the acoustic environment within automotive vehicles, there is an ...
Prevention of transmitted sound through car doors is a critical issue; as doors are the weakest part...
September 2014, 111 pages Doors are the weakest parts of the buildings in terms of sound transmissio...
In this study, the effect of weatherstrip seals on panel vibrations and structure borne noise is stu...
Double-wall structures are widely used in noise control due to their superiority over single-leaf st...
A new method is proposed to predict the noise radiated in the high frequency range by a structure vi...
This paper presents a rigid walled car cabin model to predict the acoustic effects of vehicle interi...
In this study, the effect of weatherstrip seals on panel vibrations and structure borne noise is stu...
The door closing action is a recurrent situation when using a vehicle, and its sound is therefore a ...
Abstract: The noise and vibration signatures of automotive passenger cabins contribute substantially...
Environmental noise and noise in the interiors, is a major concern. Companies, in sectors as varied ...
Covention CIFRE - Airbus Operations SAS, Cotutelle France-QuébecThe prediction of aircraft interior ...