The Integral Fast Reactor (IFR) concept is an innovative approach to liquid metal reactor design which is being studied by Argonne National Laboratory. Two of the key features of the IFR design are a metal fuel core design, based on the fuel technology developed at EBR-II, and an integral fuel cycle with a colocated fuel cycle facility based on the compact and simplified process steps made possible by the use of metal fuel. The paper presents the safety characteristics of the IFR concept which derive from the use of metal fuel. Liquid metal reactors, because of the low pressure coolant operating far below its boiling point, the natural circulation capability, and high system heat capacities, possess a high degree of inherent safety. The use...
The demand for new and advance nuclear systems are widely studied all over the world. By the late 20...
The report describes the development of an innovative magnetohydrodynamic (MHD) space-integrated coo...
AbstractThe thermal, mechanical, and neutronic performance of the metal alloy fast reactor fuel desi...
The Integral Fast Reactor (IFR) is an advanced liquid-metal-cooled reactor concept being developed a...
The Integral Fast Reactor (IFR) is an advanced liquid metal reactor concept being developed at Argon...
The Integral Fast Reactor is a closed reactor fuel cycle composed of a metal fuelled, tank type, sod...
The US Liquid Metal Reactor Development Program has been restructured to take advantage of the oppor...
The Integral Fast Reactor (IFR) is a generic advanced liquid metal cooled reactor concept being deve...
Argonne National Laboratory has been working for the past five years to develop and demonstrate the ...
The cornerstones of the United States Advanced Liquid Metal Cooled Reactor (ALMR) program sponsored ...
A vast amount of research and development work has been done in recent years to resolve the issues o...
Argonne National Laboratory, since 1984, has been developing the Integral Fast Reactor (IFR). This p...
This paper characterizes the areas of Integral Fast Reactor (IFR) safety research in terms of their ...
Since more than 15 years, the National Centre for Scientific Research (CNRS, France) has focused R&D...
In light of the scientific evidence for changes in the climate caused by greenhouse-gas emissions fr...
The demand for new and advance nuclear systems are widely studied all over the world. By the late 20...
The report describes the development of an innovative magnetohydrodynamic (MHD) space-integrated coo...
AbstractThe thermal, mechanical, and neutronic performance of the metal alloy fast reactor fuel desi...
The Integral Fast Reactor (IFR) is an advanced liquid-metal-cooled reactor concept being developed a...
The Integral Fast Reactor (IFR) is an advanced liquid metal reactor concept being developed at Argon...
The Integral Fast Reactor is a closed reactor fuel cycle composed of a metal fuelled, tank type, sod...
The US Liquid Metal Reactor Development Program has been restructured to take advantage of the oppor...
The Integral Fast Reactor (IFR) is a generic advanced liquid metal cooled reactor concept being deve...
Argonne National Laboratory has been working for the past five years to develop and demonstrate the ...
The cornerstones of the United States Advanced Liquid Metal Cooled Reactor (ALMR) program sponsored ...
A vast amount of research and development work has been done in recent years to resolve the issues o...
Argonne National Laboratory, since 1984, has been developing the Integral Fast Reactor (IFR). This p...
This paper characterizes the areas of Integral Fast Reactor (IFR) safety research in terms of their ...
Since more than 15 years, the National Centre for Scientific Research (CNRS, France) has focused R&D...
In light of the scientific evidence for changes in the climate caused by greenhouse-gas emissions fr...
The demand for new and advance nuclear systems are widely studied all over the world. By the late 20...
The report describes the development of an innovative magnetohydrodynamic (MHD) space-integrated coo...
AbstractThe thermal, mechanical, and neutronic performance of the metal alloy fast reactor fuel desi...