In this paper, Nodal dynamic method is introduced to model the TRIGA Mark II reactor of the University of Pavia as a dynamic system for the total operative power range (i.e. 0–250 kW) using a zero dimensional thermal hydraulic method. Neutronic and thermal hydraulic models are coupled in order to demonstrate reactor dynamic behavior. The reactor is divided into bi-dimensional zones and simulated in Serpent 2 to obtain two group cross sections for each specified zone as well as kinetic parameters. And they are applied in nodal method for the analysis of reactor dynamic behavior. Point kinetic and nodal dynamic methods are utilized for the second core configuration as the neutronic model. Different reactivities (i.e. 190, 104, 78, 40 pcm) are...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...
In this paper, Nodal dynamic method is introduced to model the TRIGA Mark II reactor of the Universi...
In this paper, Nodal dynamic method is introduced to model the TRIGA Mark II reactor of the Universi...
In this paper, Nodal dynamic method is introduced to model the TRIGA Mark II reactor of the Universi...
In this paper, Nodal dynamic method is introduced to model the TRIGA Mark II reactor of the Universi...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
In this paper the development of a model for the nuclear research reactor TRIGA Mark II operating at...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...
In this paper, Nodal dynamic method is introduced to model the TRIGA Mark II reactor of the Universi...
In this paper, Nodal dynamic method is introduced to model the TRIGA Mark II reactor of the Universi...
In this paper, Nodal dynamic method is introduced to model the TRIGA Mark II reactor of the Universi...
In this paper, Nodal dynamic method is introduced to model the TRIGA Mark II reactor of the Universi...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
Aim of this work is to reproduce the dynamic behavior of the TRIGA Mark II reactor of the University...
In this paper the development of a model for the nuclear research reactor TRIGA Mark II operating at...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...
The primary aim of this work is to improve the analysis of the dynamic behaviour of the TRIGA Mark I...