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Article Dans Une Revue International Journal of Thermal Sciences Année : 2016

Non-Fickian moisture diffusion in thermally modified beech wood analyzed by the inverse method

Résumé

Non-Fickian diffusion in native and thermally modified wood was analyzed by the inverse method. A low quality of the identified diffusivity values was found for the diffusivity which was either constant or varying with water content. This was explained by the non-Fickian behavior. It was especially distinct for thermally modified wood for which an increased delay in obtaining the hygroscopic equilibrium was clearly shown. Such a delay was explained by time required for molecular reorganization to produce new sorption sites. This phenomenon was accounted to improve the physical model by modifying the convective boundary condition. A relaxation mechanism was used for this purpose with an adequate time constant.
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Dates et versions

hal-01342970 , version 1 (07-07-2016)

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Wiesław Olek, Romain Rémond, Jerzy Weres, Patrick Perre. Non-Fickian moisture diffusion in thermally modified beech wood analyzed by the inverse method. International Journal of Thermal Sciences, 2016, 109, pp.291-298. ⟨10.1016/j.ijthermalsci.2016.06.023⟩. ⟨hal-01342970⟩
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