This paper presents an experimental study of the calibration of a non-adiabatic single-cell calorimeter called KAROLINA. This type of sensor is used to quantify the nuclear heating rate inside MTRs (Material Testing Reactors). The calibration of this sensor type is carried out in laboratory conditions without irradiation. The calibration corresponds to a preliminary step, which is crucial to use this sensor in real conditions. In the case of the studied single-cell calorimeter owning no heating element, the calibration is realized with a specific test bench, called BERTAN, based on thermal transient regimes. First of all, the paper describes the methodology of the determination of the calorimeter sensitivity and the dedicated experimental s...
International audienceNuclear heating inside an MTR reactor needs to be known in order to design and...
International audienceThe present work focuses on nuclear heating. This work belongs to a new advanc...
This paper deals with the CALORRE differential calorimeter patented by Aix-Marseille University and ...
The nuclear radiation energy deposition rate is a key value for the thermal design of experiments, o...
This paper concerns experimental studies of different designs of a new compact calorimetric cell und...
ANIMMA Conference, Lisbon, PORTUGAL, 2015International audienceThe nuclear radiation energy depositi...
This paper concerns experimental and numerical works on a new differential calorimeter called CALORR...
International audienceThis paper reviews the work to date on the CALORRE differential calorimeter pa...
This paper gives a short review of sensors dedicated to measuring nuclear heating rate inside fissio...
International audienceNuclear heating measurements in Material Testing Reactors are crucial for the ...
International audienceIn the field of nuclear research, the measurement and knowledge of nuclear hea...
Isothermal (heat conduction) calorimetry is a general technique to study processes through the therm...
Robust fast-response transient calorimeters with novel calorimeter elements have attracted the atten...
The nuclear heating measurements in Material Testing Reactors (MTRs) are crucial for the study of nu...
International audienceNuclear heating inside an MTR reactor needs to be known in order to design and...
International audienceThe present work focuses on nuclear heating. This work belongs to a new advanc...
This paper deals with the CALORRE differential calorimeter patented by Aix-Marseille University and ...
The nuclear radiation energy deposition rate is a key value for the thermal design of experiments, o...
This paper concerns experimental studies of different designs of a new compact calorimetric cell und...
ANIMMA Conference, Lisbon, PORTUGAL, 2015International audienceThe nuclear radiation energy depositi...
This paper concerns experimental and numerical works on a new differential calorimeter called CALORR...
International audienceThis paper reviews the work to date on the CALORRE differential calorimeter pa...
This paper gives a short review of sensors dedicated to measuring nuclear heating rate inside fissio...
International audienceNuclear heating measurements in Material Testing Reactors are crucial for the ...
International audienceIn the field of nuclear research, the measurement and knowledge of nuclear hea...
Isothermal (heat conduction) calorimetry is a general technique to study processes through the therm...
Robust fast-response transient calorimeters with novel calorimeter elements have attracted the atten...
The nuclear heating measurements in Material Testing Reactors (MTRs) are crucial for the study of nu...
International audienceNuclear heating inside an MTR reactor needs to be known in order to design and...
International audienceThe present work focuses on nuclear heating. This work belongs to a new advanc...
This paper deals with the CALORRE differential calorimeter patented by Aix-Marseille University and ...