In the context of the forthcoming next generation of Radioactive Ion Beams (RIBs) facilities based on an Isotope Separation On Line (ISOL) method, the development of production targets capable of dissipating the high power deposited by the primary beam is a major challenge. The concept of a high-power target based on a liquid Pb–Bi loop incorporating a heat-exchanger and a diffusion chamber was proposed within EURISOL DS and is being developed within the LIEBE1 project. Due to the non-static character of the target, specific hydrodynamics issues are of concern. In this paper, these issues are studied mostly based on three-dimensional (3D) Computational Fluid Dynamics analysis of the flow of the Lead Bismuth Eutectic (LBE) target, resulting ...
Thermal hydraulics related to the design of the spallation target module of an accelerator-driven su...
and the EURISOL-DS Task#2 collaboration This technical note summarises the design calculations perfo...
The EURISOL (European Isotope Separation Online) Design Study is addressing new high power target de...
Megawatt-class molten targets, combining high material densities and good heat transfer properties a...
More and more, the power of primary beam sent onto targets increases until reaching several kiloWatt...
The European Isotope Separation On-Line Radioactive Ion Beam project (EURISOL) is set to design the ...
The subject of this thesis is to design a liquid target able to account for the stress induced by th...
The European Isotope Separation On-Line Radioactive Ion Beam Facility (EURISOL) is set to be the ‘ne...
With the aim of increasing the primary beam intensity in the next generation Radioactive Ion Beam fa...
We have carried out numerical simulations of the thermal hydraulic behavior of a neutron spallation ...
This report describes efforts made at the Oak Ridge National Laboratory to design high-efficiency-re...
Le sujet de cette thèse est le développement d'une cible liquide haute puissance capable de gérer le...
The European Isotope Separation On-Line Radioactive Ion Beam project (EURISOL) is set to design the ...
The study of thermal-hydraulic issues related to target module of an accelerator driven sub-critical...
One of the most common PET isotopes, 18F, is mainly produced in liquid targets. The production yield...
Thermal hydraulics related to the design of the spallation target module of an accelerator-driven su...
and the EURISOL-DS Task#2 collaboration This technical note summarises the design calculations perfo...
The EURISOL (European Isotope Separation Online) Design Study is addressing new high power target de...
Megawatt-class molten targets, combining high material densities and good heat transfer properties a...
More and more, the power of primary beam sent onto targets increases until reaching several kiloWatt...
The European Isotope Separation On-Line Radioactive Ion Beam project (EURISOL) is set to design the ...
The subject of this thesis is to design a liquid target able to account for the stress induced by th...
The European Isotope Separation On-Line Radioactive Ion Beam Facility (EURISOL) is set to be the ‘ne...
With the aim of increasing the primary beam intensity in the next generation Radioactive Ion Beam fa...
We have carried out numerical simulations of the thermal hydraulic behavior of a neutron spallation ...
This report describes efforts made at the Oak Ridge National Laboratory to design high-efficiency-re...
Le sujet de cette thèse est le développement d'une cible liquide haute puissance capable de gérer le...
The European Isotope Separation On-Line Radioactive Ion Beam project (EURISOL) is set to design the ...
The study of thermal-hydraulic issues related to target module of an accelerator driven sub-critical...
One of the most common PET isotopes, 18F, is mainly produced in liquid targets. The production yield...
Thermal hydraulics related to the design of the spallation target module of an accelerator-driven su...
and the EURISOL-DS Task#2 collaboration This technical note summarises the design calculations perfo...
The EURISOL (European Isotope Separation Online) Design Study is addressing new high power target de...