Service life of timber bridges is predominantly affected by the site-specific climatic conditions in terms of moisture and temperature over time, the overall design, the design of details, and the choice of materials. In recent years, a performance-based methodology has been developed to predict (1) the material climatic conditions within timber components from macro climate data and comparison between design details, (2) decay intensity from material climate data, and (3) the material resistance as a combined effect of wood-inherent properties and its moisture dynamics. Within the WoodWisdomNet project ‘Durable Timber Bridges’ we emphasized on utilizing exposure, decay, and resistance models for a comprehensive guideline for the design of ...
A model of wood decay has been developed that can be incorporated into a hygrothermal model of build...
Timber bridges are subjected to climatic changes respectively cycles which result, due to the hygros...
During their functional life, building components are exposed to moisture and other environment stre...
The longevity of timber structures in exposed outdoor environments is often perceived to be unreliab...
Performance based building (PBB) and design is closely connected to various needs and requirements: ...
To predict the service life of a structure, a model where the exposure of a structure is compared to...
Timber road bridges have been built worldwide since centuries. The high performance of wood as struc...
Wood is one of the most important construction materials, and its use in building applications has i...
Timber bridges are economical, easy to construct, use renewable material and can have a long service...
Timber bridges are economical, easy to construct, use renewable material and can have a long service...
Comprehensive approaches to predict performance of wood products are requested by international stan...
Timber road bridges are high performing structures and built worldwide since centuries. Modern timbe...
Wood is susceptible to decay if it is exposed to high moisture contents and certain temperatures dur...
For wood material, moisture stress and biological factors like mould and decay fungi are often criti...
During their functional life, building components are exposed to moisture and other environment stre...
A model of wood decay has been developed that can be incorporated into a hygrothermal model of build...
Timber bridges are subjected to climatic changes respectively cycles which result, due to the hygros...
During their functional life, building components are exposed to moisture and other environment stre...
The longevity of timber structures in exposed outdoor environments is often perceived to be unreliab...
Performance based building (PBB) and design is closely connected to various needs and requirements: ...
To predict the service life of a structure, a model where the exposure of a structure is compared to...
Timber road bridges have been built worldwide since centuries. The high performance of wood as struc...
Wood is one of the most important construction materials, and its use in building applications has i...
Timber bridges are economical, easy to construct, use renewable material and can have a long service...
Timber bridges are economical, easy to construct, use renewable material and can have a long service...
Comprehensive approaches to predict performance of wood products are requested by international stan...
Timber road bridges are high performing structures and built worldwide since centuries. Modern timbe...
Wood is susceptible to decay if it is exposed to high moisture contents and certain temperatures dur...
For wood material, moisture stress and biological factors like mould and decay fungi are often criti...
During their functional life, building components are exposed to moisture and other environment stre...
A model of wood decay has been developed that can be incorporated into a hygrothermal model of build...
Timber bridges are subjected to climatic changes respectively cycles which result, due to the hygros...
During their functional life, building components are exposed to moisture and other environment stre...