The European Safety and Environmental Assessment of Fusion Power (SEAFP-2) program deals with safety studies for power reactor designs. In the project, the cryostat, which acts also as a biological shield, consists in a 2,5 m thick concrete layer. In this paper, heat deposition on the cryostat/biological shield due to neutron and gamma fluxes during reactor operation has been calculated. It is the result of a discrete ordinates neutronic model of the reactor. It can be verified that the radial attenuation of the heat deposition is the dominant component. Temperature distribution in the cryostat during reactor operation has been computed. The relatively simple geometry of the component and the simple heat deposition function expressi...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
Nuclear power plant now takes an important part in the world's electricity generation. In human hist...
Spent fuel containing material (SFCM) can arise during severe nuclear reactor accident by melting of...
The European Safety and Environmental Assessment of Fusion Power (SEAFP-2) program deals with safety...
The thermal and total epithermal neutron flux distributions in the EGCR from the center of the core ...
It is common practice in nuclear engineering to use concrete as shielding material for nuclear facil...
The numerical approach for the coupled damage-creep modeling of concrete biological shield, which co...
A transfer–purge chamber (TPC) is a double-steel-plate, heavy-concrete, curved-surface composite str...
The effect of introducing a neutron and gamma shield into the annulus between the reactor vessel and...
The reactor containment is one of the most important buildings at a nuclear power plant. In case of ...
WOS:000545559400080The residual properties of shielding structures need to be redefined after exposu...
The beryllium permanent reflector of the High Flux Isotope Reactor has the main functions for slowin...
The climatic conditions at the concrete containment wall surfaces of two nuclear reactor containment...
Spatially dependent neutron and gamma fluxes and their associated heating rates have been calculated...
International audienceDistributed Optical Fiber Sensing and Self-Powered Nuclear Detectors are poten...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
Nuclear power plant now takes an important part in the world's electricity generation. In human hist...
Spent fuel containing material (SFCM) can arise during severe nuclear reactor accident by melting of...
The European Safety and Environmental Assessment of Fusion Power (SEAFP-2) program deals with safety...
The thermal and total epithermal neutron flux distributions in the EGCR from the center of the core ...
It is common practice in nuclear engineering to use concrete as shielding material for nuclear facil...
The numerical approach for the coupled damage-creep modeling of concrete biological shield, which co...
A transfer–purge chamber (TPC) is a double-steel-plate, heavy-concrete, curved-surface composite str...
The effect of introducing a neutron and gamma shield into the annulus between the reactor vessel and...
The reactor containment is one of the most important buildings at a nuclear power plant. In case of ...
WOS:000545559400080The residual properties of shielding structures need to be redefined after exposu...
The beryllium permanent reflector of the High Flux Isotope Reactor has the main functions for slowin...
The climatic conditions at the concrete containment wall surfaces of two nuclear reactor containment...
Spatially dependent neutron and gamma fluxes and their associated heating rates have been calculated...
International audienceDistributed Optical Fiber Sensing and Self-Powered Nuclear Detectors are poten...
Concrete is commonly used as a biological shield against nuclear radiation. As long as, in the desig...
Nuclear power plant now takes an important part in the world's electricity generation. In human hist...
Spent fuel containing material (SFCM) can arise during severe nuclear reactor accident by melting of...