This report presents FY13 activities for the analysis of D2O cooled tight-pitch High-Conversion PWRs (HCPWRs) with U-Pu and Th-U fueled cores aiming at break-even or near breeder conditions while retaining the negative void reactivity. The analyses are carried out from several aspects which could not be covered in FY12 activities. SCALE 6.1 code system is utilized, and a series of simple 3D fuel pin-cell models are developed in order to perform Monte Carlo based criticality and burnup calculations. The performance of U-Pu fueled cores with axial and internal blankets is analyzed in terms of their impact on the relative fissile Pu mass balance, initial Pu enrichment, and void coefficient. In FY12, Pu conversion performances of D2O-cooled HCP...
In this reactor physics study, we attempt to design a high power density core that fulfills the obje...
The Deep Burn (DB) Project is a U.S. Department of Energy sponsored feasibility study of Transuranic...
The current focus of the Deep Burn Project is on once-through burning of transuranice (TRU) in light...
This report presents a neutronics analysis of tight-pitch D2O-cooled PWRs loaded with MOX fuel and f...
This paper presents a preliminary neutronics analysis of tight-pitch D2O-cooled high-conversion PWRs...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2002.Includes ...
International audienceBased on SMURE (Serpent2/MCNP Utility) and NDM (Nodal Drift Method for time-de...
International audienceBased on SMURE (Serpent2/MCNP Utility) and NDM (Nodal Drift Method for time-de...
This study explores a possibility of designing a high conversion (HC) Th-U233 core for current gener...
Proceedings of Global 2009 - 2734-2743 Selected paper - RGNInternational audienceThis study focuses ...
Proceedings of Global 2009 - 2734-2743 Selected paper - RGNInternational audienceThis study focuses ...
Most HWRs currently use natural uranium fuel. Using enriched uranium fuel results in a significant i...
Most HWRs currently use natural uranium fuel. Using enriched uranium fuel results in a significant i...
In currently operating commercial nuclear power plants (NPP), there are two main types of nuclear fu...
A three-dimensional MCNP model of a Westinghouse-type 17 x 17 PWR was used to assess the feasibility...
In this reactor physics study, we attempt to design a high power density core that fulfills the obje...
The Deep Burn (DB) Project is a U.S. Department of Energy sponsored feasibility study of Transuranic...
The current focus of the Deep Burn Project is on once-through burning of transuranice (TRU) in light...
This report presents a neutronics analysis of tight-pitch D2O-cooled PWRs loaded with MOX fuel and f...
This paper presents a preliminary neutronics analysis of tight-pitch D2O-cooled high-conversion PWRs...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2002.Includes ...
International audienceBased on SMURE (Serpent2/MCNP Utility) and NDM (Nodal Drift Method for time-de...
International audienceBased on SMURE (Serpent2/MCNP Utility) and NDM (Nodal Drift Method for time-de...
This study explores a possibility of designing a high conversion (HC) Th-U233 core for current gener...
Proceedings of Global 2009 - 2734-2743 Selected paper - RGNInternational audienceThis study focuses ...
Proceedings of Global 2009 - 2734-2743 Selected paper - RGNInternational audienceThis study focuses ...
Most HWRs currently use natural uranium fuel. Using enriched uranium fuel results in a significant i...
Most HWRs currently use natural uranium fuel. Using enriched uranium fuel results in a significant i...
In currently operating commercial nuclear power plants (NPP), there are two main types of nuclear fu...
A three-dimensional MCNP model of a Westinghouse-type 17 x 17 PWR was used to assess the feasibility...
In this reactor physics study, we attempt to design a high power density core that fulfills the obje...
The Deep Burn (DB) Project is a U.S. Department of Energy sponsored feasibility study of Transuranic...
The current focus of the Deep Burn Project is on once-through burning of transuranice (TRU) in light...