Heat deposition inside thick targets due to interaction of high energy protons (Ep~GeV) has been estimated using an improved version of the Monte Carlo simulation code CASCADE.04.h. The results are compared with the available experimental data for thick targets of Be, Al, Fe, Cu, Pb and Bi at proton energies of 0.8 GeV, 1.0 GeV and 1.2 GeV. A more continuous heat deposition approach which has been adopted in CASCADE.04.h yields results which are in better agreement with the experimental data as compared to the ones from the earlier version of CASCADE.04. The results are also compared with the predictions of the FLUKA Monte Carlo code. Both CASCADE.04.h and FLUKA predictions are nearly similar for heavy targets and both agree with the experi...
Introduction Combined thermal and fluid modeling is useful for design and optimization of cyclotron...
The PBW thermohydraulic analysis is built around the networking of the ESS BILBAO Target Division wi...
The heat distributions within the components of the target station of the Spallation Neutron Source ...
The benchmark is proposed on the basis of the first axial residue production distributions measureme...
In this article, thermal modeling techniques are used to simulate ISOL targets irradiated with high ...
In this article, thermal modeling techniques are used to simulate ISOL targets irradiated with high ...
246-254Calorimetric experiments have been performed to analyze different thick targets of natU, C, P...
The spallation target is the component coupling the accelerator and the reactor and is regarded as t...
Calorimetric experiments have been performed to analyze different thick targets of natU, C, Pb mater...
The neutron production in thick targets irradiated with 1 GeV protons was studied experimentally, an...
The mechanical design of the target module of an accelerator driven sub-critical nuclear reactor sys...
The neutron production in thick targets irradiated with 1 GeV protons was studied experimentally, an...
Calorimetric experiments have been performed to analyze different thick targets of natU, C, Pb mater...
We have carried out numerical simulations of the thermal hydraulic behavior of a neutron spallation ...
Introduction Combined thermal and fluid modeling is useful for design and optimization of cyclotron...
Introduction Combined thermal and fluid modeling is useful for design and optimization of cyclotron...
The PBW thermohydraulic analysis is built around the networking of the ESS BILBAO Target Division wi...
The heat distributions within the components of the target station of the Spallation Neutron Source ...
The benchmark is proposed on the basis of the first axial residue production distributions measureme...
In this article, thermal modeling techniques are used to simulate ISOL targets irradiated with high ...
In this article, thermal modeling techniques are used to simulate ISOL targets irradiated with high ...
246-254Calorimetric experiments have been performed to analyze different thick targets of natU, C, P...
The spallation target is the component coupling the accelerator and the reactor and is regarded as t...
Calorimetric experiments have been performed to analyze different thick targets of natU, C, Pb mater...
The neutron production in thick targets irradiated with 1 GeV protons was studied experimentally, an...
The mechanical design of the target module of an accelerator driven sub-critical nuclear reactor sys...
The neutron production in thick targets irradiated with 1 GeV protons was studied experimentally, an...
Calorimetric experiments have been performed to analyze different thick targets of natU, C, Pb mater...
We have carried out numerical simulations of the thermal hydraulic behavior of a neutron spallation ...
Introduction Combined thermal and fluid modeling is useful for design and optimization of cyclotron...
Introduction Combined thermal and fluid modeling is useful for design and optimization of cyclotron...
The PBW thermohydraulic analysis is built around the networking of the ESS BILBAO Target Division wi...
The heat distributions within the components of the target station of the Spallation Neutron Source ...