10 pags., 15 figs.The paper addresses some of the most relevant issues concerning the thermal hydraulics and radiation damage of the neutron generation target to be built at the European Spallation Source as recently approved after a critical design review. The target unit consists of a set of Tungsten blocks placed inside a wheel of 2.5 m diameter which rotates at some 0.5 Hz in order to distribute the heat generated from incoming protons which reach the target in the radial direction. The spallation material elements are composed of an array of Tungsten pieces which rest on a rotating steel support (the cassette) and are distributed in a cross-flow configuration. The thermal, mechanical and radiation effects resulting from the impact of a...
Neutrons are an ideal probe for understanding the microscopic structure and dynamics of the matter a...
The European Spallation Source is being constructed in Lund, Sweden and is planned to be the world's...
The neutron time-of-flight (n_TOF) facility at the European Laboratory for Particle Physics (CERN) i...
From a modest beginning of a few kW of beam power spallation sources have now evolved into systems t...
Accelerator-driven neutron technologies use spallation neutron sources (SNS`s) in which high-energy ...
A thermal-hydraulic (T-H) analysis is conducted to determine the feasibility and limitations of a wa...
The European Spallation Source (ESS), which is currently under construction in Lund, will use pure t...
A feasibility study of a compact high power density target for a spallation neutron source was under...
In many areas of physics, materials and nuclear engineering, it is extremely valuable to have a very...
Accelerator Driven Systems in nuclear technology will handle very high power of ionizing and non-ion...
When coupled with the spallation process in appropriate target materials, high-power accelerators ca...
In the framework of the GEDEON Materials workshop, and of the CEA studies on accelerator driven syst...
The materials exposed to the most damaging radiation environments in an SNS (spallation neutron sour...
The neutron time-of-flight (n_TOF) facility at the European Laboratory for Particle Physics (CERN) i...
In principle, intense spallation neutron sources can be used not only to irradiate materials (e.g. w...
Neutrons are an ideal probe for understanding the microscopic structure and dynamics of the matter a...
The European Spallation Source is being constructed in Lund, Sweden and is planned to be the world's...
The neutron time-of-flight (n_TOF) facility at the European Laboratory for Particle Physics (CERN) i...
From a modest beginning of a few kW of beam power spallation sources have now evolved into systems t...
Accelerator-driven neutron technologies use spallation neutron sources (SNS`s) in which high-energy ...
A thermal-hydraulic (T-H) analysis is conducted to determine the feasibility and limitations of a wa...
The European Spallation Source (ESS), which is currently under construction in Lund, will use pure t...
A feasibility study of a compact high power density target for a spallation neutron source was under...
In many areas of physics, materials and nuclear engineering, it is extremely valuable to have a very...
Accelerator Driven Systems in nuclear technology will handle very high power of ionizing and non-ion...
When coupled with the spallation process in appropriate target materials, high-power accelerators ca...
In the framework of the GEDEON Materials workshop, and of the CEA studies on accelerator driven syst...
The materials exposed to the most damaging radiation environments in an SNS (spallation neutron sour...
The neutron time-of-flight (n_TOF) facility at the European Laboratory for Particle Physics (CERN) i...
In principle, intense spallation neutron sources can be used not only to irradiate materials (e.g. w...
Neutrons are an ideal probe for understanding the microscopic structure and dynamics of the matter a...
The European Spallation Source is being constructed in Lund, Sweden and is planned to be the world's...
The neutron time-of-flight (n_TOF) facility at the European Laboratory for Particle Physics (CERN) i...