The design process for determining the mass increase for the substitution of low-enriched uranium (LEU) for high-enriched uranium (HEU) in space nuclear reactor systems is an optimization process which must simultaneously consider several variables. This process becomes more complex whenever the reactor core operates on an in-core thermionic power conversion, in which the fissioning of the nuclear fuel is used to directly heat thermionic emitters, with the subsequent elimination of external power conversion equipment. The increased complexity of the optimization process for this type of system is reflected in the work reported herein, where considerably more information has been developed for the moderated in-core thermionic reactors
A plan is being developed for the conversion of the NIST research reactor (NBSR) from high-enriched ...
In accordance with a 1986 NRC ruling, the MIT Research Reactor (MITR) is planning on converting fro...
The process for converting the University of Massachusetts Lowell Research Reactor (UMLRR) from high...
Compactness and low mass are important factors in the design of space reactors, which often leads to...
Launching mass into space is very expensive, and minimization of the mass of space-bound components ...
A computational study has been initiated at ORNL to examine the feasibility of converting the High F...
Incore thermionic space reactor design concepts which operate at a nominal power output range of 20 ...
Transitioning to High Assay Low Enriched Uranium-fueled reactors will alter the material requirement...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Nuclear Science and Engineering, 2012...
A parametric study of pressurized light water reactor cores was undertaken, in which "both heat...
The MIT Research Reactor (MITR) is in the process of conducting a design study to convert from High...
Thesis: S.M., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering, ...
Since the 1970’s, global efforts have been going on to replace the high-enriched (>90% 235U), low-de...
A study has been carried out to understand how the NIST research reactor (NBSR) might be converted f...
In order to consider the conversion of the High Flux Isotope Reactor (HFIR) from highly enriched ura...
A plan is being developed for the conversion of the NIST research reactor (NBSR) from high-enriched ...
In accordance with a 1986 NRC ruling, the MIT Research Reactor (MITR) is planning on converting fro...
The process for converting the University of Massachusetts Lowell Research Reactor (UMLRR) from high...
Compactness and low mass are important factors in the design of space reactors, which often leads to...
Launching mass into space is very expensive, and minimization of the mass of space-bound components ...
A computational study has been initiated at ORNL to examine the feasibility of converting the High F...
Incore thermionic space reactor design concepts which operate at a nominal power output range of 20 ...
Transitioning to High Assay Low Enriched Uranium-fueled reactors will alter the material requirement...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Nuclear Science and Engineering, 2012...
A parametric study of pressurized light water reactor cores was undertaken, in which "both heat...
The MIT Research Reactor (MITR) is in the process of conducting a design study to convert from High...
Thesis: S.M., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering, ...
Since the 1970’s, global efforts have been going on to replace the high-enriched (>90% 235U), low-de...
A study has been carried out to understand how the NIST research reactor (NBSR) might be converted f...
In order to consider the conversion of the High Flux Isotope Reactor (HFIR) from highly enriched ura...
A plan is being developed for the conversion of the NIST research reactor (NBSR) from high-enriched ...
In accordance with a 1986 NRC ruling, the MIT Research Reactor (MITR) is planning on converting fro...
The process for converting the University of Massachusetts Lowell Research Reactor (UMLRR) from high...