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Article Dans Une Revue Chemical Engineering and Technology Année : 2011

A New Control-Volume Finite-Element Scheme for Heterogeneous Porous Media: Application to the Drying of Softwood

Elliot J. Carr
  • Fonction : Auteur
Ian W. Turner
  • Fonction : Auteur

Résumé

An improved mesoscopic model is presented for simulating the drying of porous media. The aim of this model is to account for two scales simultaneously: the scale of the whole product and the scale of the heterogeneities of the porous medium. The innovation of this method is the utilization of a new mass-conservative scheme based on the Control-Volume Finite-Element (CV-FE) method that partitions the moisture content field over the individual sub-control volumes surrounding each node within the mesh. Although the new formulation has potential for application across a wide range of transport processes in heterogeneous porous media, the focus here is on applying the model to the drying of small sections of softwood consisting of several growth rings. The results conclude that, when compared to a previously published scheme, only the new mass-conservative formulation correctly captures the true moisture content evolution in the earlywood and latewood components of the growth rings during drying.

Dates et versions

hal-00805355 , version 1 (27-03-2013)

Identifiants

Citer

Elliot J. Carr, Ian W. Turner, Patrick Perre. A New Control-Volume Finite-Element Scheme for Heterogeneous Porous Media: Application to the Drying of Softwood. Chemical Engineering and Technology, 2011, 34 (7), pp.1143-1150. ⟨10.1002/ceat.201100060⟩. ⟨hal-00805355⟩
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