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Scattering by a fluid cylinder in a porous medium: application to trabecular bone
Francine Luppé1, Jean-Marc Conoir, Hervé Franklin
1Laboratoire d'Acoustique Ultrasonore et d'Electronique, UMR 6068, Université du Havre, France.
Abstract:
In a trabecular bone, considered as a nondissipative porous medium, the scattering of an incident wave by cylindrical pores larger than the wavelength is studied. The goal is to know if scattering alone may cause such a high attenuation as that observed in calcaneus. The porous medium is modelized via Biot's theory and the scattering by a single pore is characterized from the definition of a scattering matrix. An approximation of weakly disordered medium is then discussed to estimate the effective attenuation and dispersion as a function of frequency. These effective properties are shown to be different of those measured on calcaneus, due to the neglect of wave conversions during the scattering process.