Development Of A Multi Physics Approach To The Modelling And Analysis Of Molten Salt Reactors


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Multi-physics Approach to the Modelling and Analysis of Molten Salt Reactors


Multi-physics Approach to the Modelling and Analysis of Molten Salt Reactors

Author: Lelio Luzzi

language: en

Publisher: Nova Novinka

Release Date: 2012


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Multi-Physics Modelling (MPM) is an innovative simulation technique that looks very promising for the employment in the field of nuclear engineering as an integrative analysis support in the design development of current and innovative nuclear reactors. This book presents a Multi-Physics Modelling (MPM) approach to the analysis of nuclear reactor core behaviour, developed to study the coupling between neutronics and thermo-hydrodynamics. Reference is made to the Molten Salt Reactor, one of the innovative nuclear systems under development in the framework of the Generation IV International Forum, but the same methodology can be applied to other reactor systems.

Development of a Multi-physics Approach to the Modelling and Analysis of Molten Salt Reactors


Development of a Multi-physics Approach to the Modelling and Analysis of Molten Salt Reactors

Author: Valentino Di Marcello

language: en

Publisher:

Release Date: 2010


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Status of Molten Salt Reactor Technology


Status of Molten Salt Reactor Technology

Author: IAEA

language: en

Publisher: International Atomic Energy Agency

Release Date: 2023-11-27


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Written to assist individuals in academia and industry and in relevant regulatory and policy roles, this publication provides a summary of the current knowledge on the status of research, technological developments, reactor designs and experiments in the area of advanced reactors that are fueled or cooled by a molten salt. Identification of challenges and areas where research and development are still required in preparation for commercial deployment gives context to current and planned work. The aim of this publication is to share information on programs and projects on molten salt reactors in Member States which will shape future collaborative efforts.