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Comparison of model numerical predictions of heat and moisture transfer in porous media with experimental observations at material and wall scales: An analysis of …
T Busser, J Berger, A Piot, M Pailha… - Drying …, 2019 - Taylor & Francis
Abstract Models for the prediction of heat and mass transfers in building porous materials
have been developed since the 90's with simulation programs such as MATCH, UMIDUS …
have been developed since the 90's with simulation programs such as MATCH, UMIDUS …
Energy and quality analysis of forced convection air-energy assisted solar timber drying
Discontinuities due to weather conditions and daylight affect solar drying, so to address that,
a working mechanism of air energy-assisted solar drying was developed in this study. An air …
a working mechanism of air energy-assisted solar drying was developed in this study. An air …
Accurate numerical simulation of moisture front in porous material
When comparing measurements to numerical simulations of moisture transfer through
porous materials a rush of the experimental moisture front is commonly observed in several …
porous materials a rush of the experimental moisture front is commonly observed in several …
Coupled heat and mass transfer in biosourced porous media without local equilibrium: a macroscopic formulation tailored to computational simulation
P Perré - International Journal of Heat and Mass Transfer, 2019 - Elsevier
This paper proposes a macroscopic formulation of coupled heat and mass transfer that can
consider non-local equilibrium often encountered in biosourced building materials (wood …
consider non-local equilibrium often encountered in biosourced building materials (wood …
On the importance of heat and mass transfer coupling for the characterization of hygroscopic insulation materials
This work is focused on mass transfer characterization of hygroscopic materials used for
insulation, such as low density fiberboards (LDF). Due to their particular morphology, these …
insulation, such as low density fiberboards (LDF). Due to their particular morphology, these …
[PDF][PDF] Experimental validation of hygrothermal models for building materials and walls: an analysis of recent trends
T Busser, J Berger, A Piot, M Pailha, M Woloszyn - 2018 - hal.science
Abstract Models for the prediction of heat and mass transfers in building porous material
have been developed since the 90's with simulation programs such as MATCH, UMIDUS …
have been developed since the 90's with simulation programs such as MATCH, UMIDUS …
Sorption and diffusion properties of untreated and thermally modified beech wood dust
Dynamic water vapor sorption experiments were carried out using beech wood dust (from
untreated and thermally modified wood) of two-particle sizes,(< 25 and 80–250 µm) …
untreated and thermally modified wood) of two-particle sizes,(< 25 and 80–250 µm) …
Evaluating moisture transfer properties of wood by inverse analysis of moisture content profiles determined during drying by X-ray attenuation
S Ouertani, A Stéphan, P Perré, C L'hostis… - Drying …, 2024 - Taylor & Francis
An X-ray density analyzer was used to determine the evolution of the moisture content (MC)
profiles of a wood board during drying. Tests were performed on quartersawn boards of five …
profiles of a wood board during drying. Tests were performed on quartersawn boards of five …
On the solution of coupled heat and moisture transport in porous material
Comparisons of experimental observation of heat and moisture transfer through porous
building materials with numerical results have been presented in numerous studies reported …
building materials with numerical results have been presented in numerous studies reported …
An adaptive simulation of nonlinear heat and moisture transfer as a boundary value problem
This work presents an alternative view on the numerical simulation of diffusion processes
applied to the heat and moisture transfer through porous building materials. Traditionally, by …
applied to the heat and moisture transfer through porous building materials. Traditionally, by …