The monitoring of timber structures exposed to natural climate fluctuations during their service life is an important topic for both their serviceability and safety. Numerical methods based on the recent advances in hygro-thermal modelling of wood can integrate the usual sensor-based monitoring techniques by reducing the maintenance costs for timber structures. In this paper, a 3D full coupled analysis based on the multi-Fickian theory with sorption hysteresis of wood is implemented in Abaqus FEM code by defining a new finite element in a user subroutine. To verify the method, the hygro-thermal behaviour of a glulam beam tested in laboratory under variable humidity within a previous research is analysed and the numerical values of moisture ...
Timber products subjected to climatic variations commonly display moisture-induced distortions that ...
This study demonstrates the modelling assisted long-term monitoring of wooden bridge components with...
The sorption isotherm is one of the most important hygric properties for modeling moisture transport...
The hygro-thermal behaviour of timber bridges exposed to continuously variable climates is a fundame...
This work proposes a multi-Fickian method to analyse the hygro-thermal behaviour of timber bridge el...
The monitoring of timber bridges during their service life is important for the maintenance plans of...
This work presents a numerical model to analyse the hygro-thermal behaviour of wooden bridge members...
In this paper a numerical method for the evaluation of moisture induced stresses in timber structure...
Due to the natural process of sorption, wood constantly interacts with the surrounding climate to es...
In this paper FEM simulations based on the recent advances in hygro-thermal modelling of wood are ca...
Variations of relative humidity and temperature result in moisture and temperature gradients in wood...
With the current advances made in three-dimensional modelling of wood, it is possible to provide an ...
The structural performance of timber elements may depend on the environmental conditions and in part...
A three-dimensional numerical model was employed in simulating nonlinear transient moisture flow in ...
The structural performance of timber elements may depend on the environmental conditions and in part...
Timber products subjected to climatic variations commonly display moisture-induced distortions that ...
This study demonstrates the modelling assisted long-term monitoring of wooden bridge components with...
The sorption isotherm is one of the most important hygric properties for modeling moisture transport...
The hygro-thermal behaviour of timber bridges exposed to continuously variable climates is a fundame...
This work proposes a multi-Fickian method to analyse the hygro-thermal behaviour of timber bridge el...
The monitoring of timber bridges during their service life is important for the maintenance plans of...
This work presents a numerical model to analyse the hygro-thermal behaviour of wooden bridge members...
In this paper a numerical method for the evaluation of moisture induced stresses in timber structure...
Due to the natural process of sorption, wood constantly interacts with the surrounding climate to es...
In this paper FEM simulations based on the recent advances in hygro-thermal modelling of wood are ca...
Variations of relative humidity and temperature result in moisture and temperature gradients in wood...
With the current advances made in three-dimensional modelling of wood, it is possible to provide an ...
The structural performance of timber elements may depend on the environmental conditions and in part...
A three-dimensional numerical model was employed in simulating nonlinear transient moisture flow in ...
The structural performance of timber elements may depend on the environmental conditions and in part...
Timber products subjected to climatic variations commonly display moisture-induced distortions that ...
This study demonstrates the modelling assisted long-term monitoring of wooden bridge components with...
The sorption isotherm is one of the most important hygric properties for modeling moisture transport...