4.5 Article

Feasibility of breed-and-burn reactor core design with nitride fuel and lead coolant

Related references

Note: Only part of the references are listed.
Article Nuclear Science & Technology

Neutron Balance Features in Breed-and-Burn Fast Reactors

Odmaa Sambuu et al.

Summary: Fast reactors operating in breed-and-burn conditions offer a potential approach to reducing the need for storage facilities for spent nuclear fuel and maximizing the effective use of uranium resources. Neutron balance analyses have identified the best combination of fuel and coolant materials to sustain B&B operating mode.

NUCLEAR SCIENCE AND ENGINEERING (2022)

Article Nuclear Science & Technology

Concept of breed and burn reactor with spiral fuel shuffling

Kazuki Kuwagaki et al.

ANNALS OF NUCLEAR ENERGY (2019)

Article Nuclear Science & Technology

Initial core design of CANDLE burning fast reactor using plutonium from LWR spent fuel

Hiroki Osato et al.

ANNALS OF NUCLEAR ENERGY (2018)

Article Nuclear Science & Technology

Concept of Stationary Wave Reactor with Rotational Fuel Shuffling

Kazuki Kuwagaki et al.

NUCLEAR SCIENCE AND ENGINEERING (2018)

Article Nuclear Science & Technology

Advanced Burner Reactors with Breed-and-Burn Thorium Blankets for Improved Economics and Resource Utilization

Guanheng Zhang et al.

NUCLEAR TECHNOLOGY (2017)

Article Nuclear Science & Technology

Neutronics feasibility of simple and dry recycling technologies for a self-sustainable breed-and-burn fast reactor

Chihyung Kim et al.

ANNALS OF NUCLEAR ENERGY (2017)

Article Nuclear Science & Technology

An optimization study on the excess reactivity in a linear breed-and-burn fast reactor (B&BR)

Donny Hartanto et al.

ANNALS OF NUCLEAR ENERGY (2016)

Article Nuclear Science & Technology

Impacts of Burnup-Dependent Swelling of Metallic Fuel on the Performance of a Compact Breed-and-Burn Fast Reactor

Donny Hartanto et al.

NUCLEAR ENGINEERING AND TECHNOLOGY (2016)

Article Nuclear Science & Technology

Design Space Analysis for Breed-and-Burn Reactor Cores

Staffan Qvist et al.

NUCLEAR SCIENCE AND ENGINEERING (2016)

Review Engineering, Multidisciplinary

The Traveling Wave Reactor: Design and Development

John Gilleland et al.

ENGINEERING (2016)

Article Nuclear Science & Technology

ODS-materials for high temperature applications in advanced nuclear systems

C. C. Eiselt et al.

NUCLEAR MATERIALS AND ENERGY (2016)

Article Nuclear Science & Technology

Design and performance of 2D and 3D-shuffled breed-and-burn cores

Staffan Qvist et al.

ANNALS OF NUCLEAR ENERGY (2015)

Article Nuclear Science & Technology

On Some Fundamental Peculiarities of the Traveling Wave Reactor

V. D. Rusov et al.

SCIENCE AND TECHNOLOGY OF NUCLEAR INSTALLATIONS (2015)

Article Nuclear Science & Technology

TERRAPOWER, LLC TRAVELING WAVE REACTOR DEVELOPMENT PROGRAM OVERVIEW

Pavel Hejzlar et al.

NUCLEAR ENGINEERING AND TECHNOLOGY (2013)

Article Nuclear Science & Technology

Technical solutions and development stages for the BREST-OD-300 reactor unit

Yu G. Dragunov et al.

ATOMIC ENERGY (2012)

Article Nuclear Science & Technology

Neutron Balance Analysis for Sustainability of Breed-and-Burn Reactors

Florent Heidet et al.

NUCLEAR SCIENCE AND ENGINEERING (2012)

Article Green & Sustainable Science & Technology

A Phased Development of Breed-and-Burn Reactors for Enhanced Nuclear Energy Sustainability

Ehud Greenspan

SUSTAINABILITY (2012)

Article Nuclear Science & Technology

Energy sustainability and economic stability with Breed and Burn reactors

Ehud Greenspan et al.

PROGRESS IN NUCLEAR ENERGY (2011)

Article Materials Science, Multidisciplinary

Thermal and mechanical properties of uranium nitride prepared by SPS technique

Hiroaki Muta et al.

JOURNAL OF MATERIALS SCIENCE (2008)

Article Nuclear Science & Technology

Comparison of sodium and lead-cooled fast reactors regarding reactor physics aspects, severe safety and economical issues

Kamil Tucek et al.

NUCLEAR ENGINEERING AND DESIGN (2006)

Article Nuclear Science & Technology

CANDLE: The new burnup strategy

H Sekimoto et al.

NUCLEAR SCIENCE AND ENGINEERING (2001)