This paper illustrates the effects on safety of TRIGA Mark-II research reactor of Bangladesh at its different steps of core burnt during reactivity induced transient. The modeling and simulation were carried by coupled point kinetics, neutronics, and thermal hydraulics code EUREKA-2/RR based on neutronics data calculated previously by Monte Carlo code for different burnt states of TRIGA core. Three burn steps until 150 MWD have been considered for present analysis which are regarded here as beginning of cycle (BOC); middle of cycle, MOC (75 MWD); and end of cycle, EOC (150 MWD). Initially, the results of steady state analysis obtained from EUREKA code for these three burn steps have been verified with that of COOLOD code. Based on consisten...
Master of ScienceDepartment of Mechanical and Nuclear EngineeringJeremy RobertsThe reactivity method...
The Kartini Triga Mark II Research Reactor (Kartini TM2RR), one of the three research reactors in In...
In the context of more and more demanding reactor managements, the fuel assembly discharge burn-up i...
This paper illustrates the effects on safety of TRIGA Mark-II research reactor of Bangladesh at its ...
Burnup dependent steady state thermal hydraulic analysis of TRIGA Mark-II research reactor has been ...
An RIA (reactivity initiated accident) analysis has been carried out for the TRIGA Mark II research ...
ANALYSIS OF UNCONTROLLED REACTIVITY INSERTION TRANSIENT OF TRIGA MARK 2000 BANDUNG USING MTR PLATE T...
The TRIGA-2000 research reactor in Bandung, Indonesia, has operated for over 50 years. Recently, the...
Analysis of the control rod insertion is important as it is closely related to reactor safety. Previ...
The conversion program of the 2 MW TRIGA reactor in Bandung consisted of the replacement of cylindri...
Fuel burnup of the JSI TRIGA was calculated by simulating complete operational history consisting of...
Control and safety of nuclear reactors are significantly influenced by the determination of safety p...
Bandung TRIGA2000 Reactor, a General Atomic (GA)-made research reactor used for training, research a...
The investigation was conducted on the out-core neutron flux and burn-up at irradiated fuel stored i...
The Nigeria Research Reactor-1 (NIRR-1) consists of small water cooled square cylindrical core of 23...
Master of ScienceDepartment of Mechanical and Nuclear EngineeringJeremy RobertsThe reactivity method...
The Kartini Triga Mark II Research Reactor (Kartini TM2RR), one of the three research reactors in In...
In the context of more and more demanding reactor managements, the fuel assembly discharge burn-up i...
This paper illustrates the effects on safety of TRIGA Mark-II research reactor of Bangladesh at its ...
Burnup dependent steady state thermal hydraulic analysis of TRIGA Mark-II research reactor has been ...
An RIA (reactivity initiated accident) analysis has been carried out for the TRIGA Mark II research ...
ANALYSIS OF UNCONTROLLED REACTIVITY INSERTION TRANSIENT OF TRIGA MARK 2000 BANDUNG USING MTR PLATE T...
The TRIGA-2000 research reactor in Bandung, Indonesia, has operated for over 50 years. Recently, the...
Analysis of the control rod insertion is important as it is closely related to reactor safety. Previ...
The conversion program of the 2 MW TRIGA reactor in Bandung consisted of the replacement of cylindri...
Fuel burnup of the JSI TRIGA was calculated by simulating complete operational history consisting of...
Control and safety of nuclear reactors are significantly influenced by the determination of safety p...
Bandung TRIGA2000 Reactor, a General Atomic (GA)-made research reactor used for training, research a...
The investigation was conducted on the out-core neutron flux and burn-up at irradiated fuel stored i...
The Nigeria Research Reactor-1 (NIRR-1) consists of small water cooled square cylindrical core of 23...
Master of ScienceDepartment of Mechanical and Nuclear EngineeringJeremy RobertsThe reactivity method...
The Kartini Triga Mark II Research Reactor (Kartini TM2RR), one of the three research reactors in In...
In the context of more and more demanding reactor managements, the fuel assembly discharge burn-up i...