Porous materials like acoustic foams can be used for shielding and their absorption abilities depend on the interaction of the acoustic wave and the complex microstructure. In this paper, a homogenization model is proposed to investigate the relation between the microstructure and the macroscopic properties. A numerical experiment is performed in the form of simulations of sound absorption tests on a porous material made from polyurethane. For simplicity, an idealized partially open cubic microstructure is adopted. The homogenization results are evaluated by comparison with Direct Numerical Simulations (DNS), showing a good performance of the approach for the studied porous material. By comparing the results, it is found that Biot's model w...
In this paper, a computational homogenization approach is exploited to study the effects of the micr...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
In this paper, a numerical homogenization approach is proposed to obtain isotropic Biot's parameters...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
In this paper, a computational homogenization approach is exploited to study the effects of the micr...
In this paper, a computational homogenization approach is exploited to study the effects of the micr...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for shielding and their absorption abilities depend...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
Porous materials like acoustic foams can be used for acoustic shielding, which is important for high...
In this paper, a numerical homogenization approach is proposed to obtain isotropic Biot's parameters...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
In this paper, a computational homogenization approach is exploited to study the effects of the micr...
In this paper, a computational homogenization approach is exploited to study the effects of the micr...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...
The sound absorption ability of porous materials is strongly related to the underlying microstructur...