Fuel burnup of the JSI TRIGA was calculated by simulating complete operational history consisting of 240 different core configurations from 1966 to 2020. At the moment we are unable to perform burnup measurements, e.g. gamma spectroscopy on burned fuel elements, hence we used weekly measured excess reactivity as a reference point of different core configurations to verify the calculated core reactivity. Changes in reactivity due to burnup were assumed to be linear and this assumption was verified for burnup intervals smaller than 3 MWd/kg(HM). The comparison was performed on 46 different core configurations with different type of fuel elements. The Serpent-2 calculations decently predict the rate of reactivity change on different cases, as ...
V magistrskem delu je predstavljena analiza zgorevanja jedrskega goriva v raziskovalnem reaktorju TR...
FiR 1, a TRIGA Mark II type research reactor, was operated in Finland for years 1962–2015 and will b...
[[abstract]]The purpose of this work is to establish a method for evaluating the burn-up values of t...
Fuel burnup of the JSI TRIGA was calculated by simulating complete operational history consisting of...
A time evolution model was developed to study fuel burnup for the TRIGA Mark II reactor at the Unive...
Master of ScienceDepartment of Mechanical and Nuclear EngineeringJeremy RobertsThe reactivity method...
International audienceAt the Reactor Physics Department of the Jozef Stefan Institute (JSI) a detail...
A time evolution model was developed to study fuel burnup for the TRIGA Mark II reactor at the Unive...
Knowledge of fuel composition as a function of irradiation time is of paramount importance both for ...
This paper illustrates the effects on safety of TRIGA Mark-II research reactor of Bangladesh at its ...
Aim of this work was to perform a rough preliminary evaluation of the burn-up of the fuel of TRIGA M...
The investigation was conducted on the out-core neutron flux and burn-up at irradiated fuel stored i...
Aim of this work was to perform a rough preliminary evaluation of the burn-up of the fuel of TRIGA M...
V magistrskem delu je predstavljena analiza zgorevanja jedrskega goriva v raziskovalnem reaktorju TR...
FiR 1, a TRIGA Mark II type research reactor, was operated in Finland for years 1962–2015 and will b...
[[abstract]]The purpose of this work is to establish a method for evaluating the burn-up values of t...
Fuel burnup of the JSI TRIGA was calculated by simulating complete operational history consisting of...
A time evolution model was developed to study fuel burnup for the TRIGA Mark II reactor at the Unive...
Master of ScienceDepartment of Mechanical and Nuclear EngineeringJeremy RobertsThe reactivity method...
International audienceAt the Reactor Physics Department of the Jozef Stefan Institute (JSI) a detail...
A time evolution model was developed to study fuel burnup for the TRIGA Mark II reactor at the Unive...
Knowledge of fuel composition as a function of irradiation time is of paramount importance both for ...
This paper illustrates the effects on safety of TRIGA Mark-II research reactor of Bangladesh at its ...
Aim of this work was to perform a rough preliminary evaluation of the burn-up of the fuel of TRIGA M...
The investigation was conducted on the out-core neutron flux and burn-up at irradiated fuel stored i...
Aim of this work was to perform a rough preliminary evaluation of the burn-up of the fuel of TRIGA M...
V magistrskem delu je predstavljena analiza zgorevanja jedrskega goriva v raziskovalnem reaktorju TR...
FiR 1, a TRIGA Mark II type research reactor, was operated in Finland for years 1962–2015 and will b...
[[abstract]]The purpose of this work is to establish a method for evaluating the burn-up values of t...