The spallation target is the component coupling the accelerator and the reactor and is regarded as the “heart” of the accelerator driven system (ADS). Heavy liquid metal lead-bismuth eutectic (LBE) is served as core coolant and spallation material to carry away heat deposition of spallation reaction and produce high flux neutron. So it is very important to study the heat transfer process in the target. In this paper, the steady-state flow pattern has been numerically obtained and taken as the input for the nuclear physics calculation, and then the distribution of the extreme large power density of the heat load is imported back to the computational fluid dynamics as the source term in the energy equation. Through the coupling, the transient...
The study of the fluid dynamics of the windowless spallation target of an accelerator-driven system ...
The thermo-fluid-dynamic and structural analysis of the spallation target for the Energy Amplifier [...
The Centre for Advanced Studies, Research and Development in Sardinia (CRS4) is participating in an...
The mechanical design of the target module of an accelerator driven sub-critical nuclear reactor sys...
We have carried out numerical simulations of the thermal hydraulic behavior of a neutron spallation ...
A lead-bismuth eutectic (LBE) spallation target design concept has been developed for the subcritica...
Thermal hydraulics related to the design of the spallation target module of an accelerator-driven su...
The study of thermal-hydraulic issues related to target module of an accelerator driven sub-critical...
The study of thermal-hydraulic issues related to target module of an accelerator driven sub-critical...
The mechanical design of the target module of an accelerator driven sub- critical nuclear reactor sy...
The study of the fluid dynamics of the windowless spallation target of an accelerator-driven system ...
Heat deposition inside thick targets due to interaction of high energy protons (Ep~GeV) has been est...
The objective of the European 6th framework Integrated Project (IP) EUROTRANS (EUROpean Research Pro...
The objective of the European 6th framework Integrated Project (IP) EUROTRANS (EUROpean Research Pro...
The objective of the European 6th framework Integrated Project (IP) EUROTRANS (EUROpean Research Pro...
The study of the fluid dynamics of the windowless spallation target of an accelerator-driven system ...
The thermo-fluid-dynamic and structural analysis of the spallation target for the Energy Amplifier [...
The Centre for Advanced Studies, Research and Development in Sardinia (CRS4) is participating in an...
The mechanical design of the target module of an accelerator driven sub-critical nuclear reactor sys...
We have carried out numerical simulations of the thermal hydraulic behavior of a neutron spallation ...
A lead-bismuth eutectic (LBE) spallation target design concept has been developed for the subcritica...
Thermal hydraulics related to the design of the spallation target module of an accelerator-driven su...
The study of thermal-hydraulic issues related to target module of an accelerator driven sub-critical...
The study of thermal-hydraulic issues related to target module of an accelerator driven sub-critical...
The mechanical design of the target module of an accelerator driven sub- critical nuclear reactor sy...
The study of the fluid dynamics of the windowless spallation target of an accelerator-driven system ...
Heat deposition inside thick targets due to interaction of high energy protons (Ep~GeV) has been est...
The objective of the European 6th framework Integrated Project (IP) EUROTRANS (EUROpean Research Pro...
The objective of the European 6th framework Integrated Project (IP) EUROTRANS (EUROpean Research Pro...
The objective of the European 6th framework Integrated Project (IP) EUROTRANS (EUROpean Research Pro...
The study of the fluid dynamics of the windowless spallation target of an accelerator-driven system ...
The thermo-fluid-dynamic and structural analysis of the spallation target for the Energy Amplifier [...
The Centre for Advanced Studies, Research and Development in Sardinia (CRS4) is participating in an...