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Mesh adaptive finite element formulation for moisture transfer in materials with a critical moisture content

✍ Scribed by Staf Roels; Jan Carmeliet; Hugo Hens


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
373 KB
Volume
46
Category
Article
ISSN
0029-5981

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✦ Synopsis


Wetting or drying of most open porous building materials is characterized by a sharp moving waterfront. Due to the high moisture gradients at the waterfront, an accurate "nite element simulation requires a very "ne mesh. To reduce computational costs a mesh adaptive method based on the Arbitrary Lagrangian Eulerian (ALE) technique is proposed. To continuously relocate the nodes on the computational domain a remesh-indicator is equally distributed. In problems of water imbibition or drying of open porous building materials speci"c attention has been paid to the zone of critical moisture content. To this extent the traditional jump-based indicator, quantifying the jump of a selected state variable, has been modi"ed into an area-based remesh-indicator. An error analysis of an academic example shows that the area-based indicator is superior to the jump-based one.

To illustrate the capabilities of the remeshing method based on an area-based indicator, one and twodimensional examples of water imbibition of ceramic brick and drying of cellulose "bre cement are included.