A simplified full-probabilistic calculation tool is developed which is capable of calculating the bending moment capacity of simply supported beams exposed to fire. It is found that the uncertainty with respect to the reduction factors for the material properties at elevated temperatures and the uncertainty with respect to the concrete cover have a negative effect on the safety level corresponding to the design value of the bending moment capacity calculated according to the Eurocode. Furthermore, the model allows an objective comparison of different design alternatives with respect to the safety level
To demonstrate adequate structural fire safety for exceptional designs, the uncertainties of the des...
We present the application of a simple probabilistic methodology to determine the reliability of a s...
We present the application of a simple probabilistic methodology to determine the reliability of a s...
A simplified full-probabilistic calculation tool is developed which is capable of calculating the be...
In this paper a simple computational tool is presented, which provides insight in the time and tempe...
During the last decades research has provided many new insights in the structural behavior of concre...
During the last decades research has provided many new insights in the structural behavior of concre...
Although several studies are available with respect to the safety level op concrete structures, the ...
When a concrete structure has been exposed to fire, a decision has to be made whether the structure ...
When a structure has been exposed to fire, a decision has to be made whether the structure should be...
Finite Element Models (FEM) allow to incorporate the structural interaction between different sectio...
The state-of-the-art for the reliability evaluation of reinforced concrete beams in a fire situation...
This paper aims to investigate the state of the art for the reliability evaluation of reinforced con...
After a fire in a building, questions arise regarding the post-fire fire capacity of the structure. ...
During a fire, some types of concrete are known to be susceptible to a sudden detachment of the oute...
To demonstrate adequate structural fire safety for exceptional designs, the uncertainties of the des...
We present the application of a simple probabilistic methodology to determine the reliability of a s...
We present the application of a simple probabilistic methodology to determine the reliability of a s...
A simplified full-probabilistic calculation tool is developed which is capable of calculating the be...
In this paper a simple computational tool is presented, which provides insight in the time and tempe...
During the last decades research has provided many new insights in the structural behavior of concre...
During the last decades research has provided many new insights in the structural behavior of concre...
Although several studies are available with respect to the safety level op concrete structures, the ...
When a concrete structure has been exposed to fire, a decision has to be made whether the structure ...
When a structure has been exposed to fire, a decision has to be made whether the structure should be...
Finite Element Models (FEM) allow to incorporate the structural interaction between different sectio...
The state-of-the-art for the reliability evaluation of reinforced concrete beams in a fire situation...
This paper aims to investigate the state of the art for the reliability evaluation of reinforced con...
After a fire in a building, questions arise regarding the post-fire fire capacity of the structure. ...
During a fire, some types of concrete are known to be susceptible to a sudden detachment of the oute...
To demonstrate adequate structural fire safety for exceptional designs, the uncertainties of the des...
We present the application of a simple probabilistic methodology to determine the reliability of a s...
We present the application of a simple probabilistic methodology to determine the reliability of a s...