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Article Dans Une Revue Journal of the Acoustical Society of America Année : 2016

Characterization of compressed earth blocks using low frequency guided acoustic waves

Résumé

The objective of this work was to analyze the influence of compaction pressure on the intrinsic acoustic parameters (porosity, tortuosity, airflow resistivity, viscous and thermal characteristic lengths) of compressed earth blocks through their identification by solving an inverse acoustic wave transmission problem. A low frequency acoustic pipe (60-6000 Hz of length 22 m, internal diameter 3.4 cm) was used for the experimental characterization of the samples. The parameters were identified by the minimization of the difference between the transmission coefficients data obtained in the pipe with that from an analytical interaction model in which the compressed earth blocks were considered as having rigid frames. The viscous and thermal effects in the pores were accounted for by employing the Johnson-Champoux-Allard-Lafarge model. The results obtained by inversion for high-density compressed earth blocks showed some discordance between the model and experiment especially for the high frequency limit of the acoustic characteristics studied. This was as a consequence of applying high compaction pressure rendering them very highly resistive therefore degrading the signal to noise ratios of the transmitted waves. The results showed that the airflow resistivity was very sensitive to the degree of the applied compaction pressure used to form the blocks.
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Dates et versions

hal-01306814 , version 1 (25-04-2016)

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Citer

Benmansour Mohamed, Erick Ogam, Zine El Abiddine E.A. Fellah, Soukaina Amel, Jelidi Ahmed, et al.. Characterization of compressed earth blocks using low frequency guided acoustic waves. Journal of the Acoustical Society of America, 2016, 139 (5), pp.2551-2560. ⟨10.1121/1.4948573⟩. ⟨hal-01306814⟩
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