A parameter study was conducted to determine the interrelated effects of: loosely or tightly coupled fuel regions separated by internal blanket assemblies, number of fuel regions, core height, number and arrangement of internal blanket subassemblies, number and size of fuel pins in a subassembly, etc. The effects of these parameters on sodium void reactivity, Doppler, incoherence, breeding gain, and thermohydraulics were of prime interest. Trends were established and ground work laid for optimization of a large, radially-heterogeneous, LMFBR core that will have low energetics in an HCDA and will have good thermal and breeding performance
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2003.Includes ...
An optimization of an Ultra-long Cycle Fast Reactor (UCFR) design with a power rating of 1000 MW (el...
The economic performance of conventional and advanced radial blanket configurations for LMFBR power ...
A parameter study was conducted to determine the interrelated effects of: loosely or tightly coupled...
A parameter study was conducted to determine the interrelated effects of: loosely or tightly coupled...
A parameter study was conducted to determine the interrelated effects of: loosely of tightly coupled...
LMFBRs with internal blankets (heterogeneous reactors) are known for reducing the sodium void reacti...
Different 1200 MWe heterogeneous core configurations have been evaluated and compared with a homogen...
The core arrangement in an LMFBR can potentially affect the lower internals, upper internals, radial...
In unprotected loss-of-flow transients in large LMFBRs sodium voiding may result in high ramp rates ...
The fuel cycle processing techniques and hard neuron spectrum of the Integral Fast Reactor (IFR) met...
The need to design LMFBR reactor cores as well as plants for lowest possible capital costs has been ...
An evaluation of the performance potential of thorium-uranium carbide and nitride fuel in 1200 MW(e)...
The design of innovative cores for Generation IV Sodium-cooled Fast Reactors (SFRs) must chiefly foc...
Core flow orificing is important because fuel lifetime (or burnup) is strongly dependent upon the pe...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2003.Includes ...
An optimization of an Ultra-long Cycle Fast Reactor (UCFR) design with a power rating of 1000 MW (el...
The economic performance of conventional and advanced radial blanket configurations for LMFBR power ...
A parameter study was conducted to determine the interrelated effects of: loosely or tightly coupled...
A parameter study was conducted to determine the interrelated effects of: loosely or tightly coupled...
A parameter study was conducted to determine the interrelated effects of: loosely of tightly coupled...
LMFBRs with internal blankets (heterogeneous reactors) are known for reducing the sodium void reacti...
Different 1200 MWe heterogeneous core configurations have been evaluated and compared with a homogen...
The core arrangement in an LMFBR can potentially affect the lower internals, upper internals, radial...
In unprotected loss-of-flow transients in large LMFBRs sodium voiding may result in high ramp rates ...
The fuel cycle processing techniques and hard neuron spectrum of the Integral Fast Reactor (IFR) met...
The need to design LMFBR reactor cores as well as plants for lowest possible capital costs has been ...
An evaluation of the performance potential of thorium-uranium carbide and nitride fuel in 1200 MW(e)...
The design of innovative cores for Generation IV Sodium-cooled Fast Reactors (SFRs) must chiefly foc...
Core flow orificing is important because fuel lifetime (or burnup) is strongly dependent upon the pe...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2003.Includes ...
An optimization of an Ultra-long Cycle Fast Reactor (UCFR) design with a power rating of 1000 MW (el...
The economic performance of conventional and advanced radial blanket configurations for LMFBR power ...