A. Nuttin
Centre national de la recherche scientifique
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Featured researches published by A. Nuttin.
Progress in Nuclear Energy | 2006
L. Mathieu; D. Heuer; R. Brissot; C. Garzenne; C. Le Brun; D. Lecarpentier; E. Liatard; J.M. Loiseaux; O. Méplan; E. Merle-Lucotte; A. Nuttin; E. Walle; J. Wilson
A re-evaluation of the Molten Salt Breeder Reactor concept has revealed problems related to its safety and to the complexity of the reprocessing considered. A reflection is carried out anew in view of finding innovative solutions leading to the Thorium Molten Salt Reactor concept. Several main constraints are established and serve as guides to parametric evaluations. These then give an understanding of the influence of important core parameters on the reactors operation. The aim of this paper is to discuss this vast research domain and to single out the Molten Salt Reactor configurations that deserve further evaluation.
Nuclear Science and Engineering | 2009
L. Mathieu; D. Heuer; E. Merle-Lucotte; R. Brissot; C. Le Brun; E. Liatard; J.M. Loiseaux; O. Méplan; A. Nuttin; D. Lecarpentier
Abstract Molten Salt Reactors based on the thorium cycle were studied in the 1950 to 1960s to lead to the Molten Salt Breeder Reactor concept, which was finally discontinued prior to any industrial development. In the past few years, this concept has once again been studied in order to generalize it and seek configurations ensuring a high intrinsic safety level, an initial inventory compatible with intensive deployment on a worldwide scale, and a not-too-demanding salt chemical reprocessing scheme. The Thorium Molten Salt Reactor (TMSR) thus defined is studied in the Th-233U cycle in various configurations obtained by modulating the amount of graphite in core to obtain a thermal, an epithermal, or a fast spectrum. In particular, configurations of a fast spectrum TMSR have been identified with outstanding safety characteristics and minimal fuel-reprocessing requirements.
international conference on advancements in nuclear instrumentation, measurement methods and their applications | 2009
J.L. Lecouey; G. Ban; P. Bergonzo; A. Billebaud; R. Brissot; S. Chabod; P. Dessagne; J.M. Fontbonne; M. Kerveno; Christian Le Brun; F.R. Lecolley; J.F. Lecolley; E. Liatard; N. Marie; C. Mer; A. Nuttin; Michal Pomorski; J.C. Steckmeyer; Henry-Emmanuel Thyébault; D. Tromson
In the framework of nuclear waste management, minor actinides could be incinerated in subcritical reactors driven by an accelerator coupled to a spallation target. For safety reason, this so-called Accelerator-Driven System (ADS) requires on-line and robust core reactivity monitoring. In such a system, a simple proportional relationship exists between the reactivity and the ratio of the beam current to the thermal power of the reactor core. This relationship is planned to be exploited as a relative reactivity indicator by the measurement of both the beam current delivered by the accelerator and the core neutron flux. The GUINEVERE experiment facility, which is being built at SCK-CEN in Mol (Belgium), will be devoted to the study of such reactivity measurement techniques. This zero power experiment will consist of the coupling of a subcritical fast core to an external source of 14-MeV neutrons originating from fusion reactions between a deuteron beam and a tritium target. In this case, the target evolution over time and target inhomogeneities preclude from using the beam current for reliable reactivity monitoring and therefore the external neutron source intensity must be monitored directly. This paper presents the systems envisioned to achieve such a monitoring and the results of test experiments.
Progress in Nuclear Energy | 2005
A. Nuttin; D. Heuer; A. Billebaud; R. Brissot; C. Le Brun; E. Liatard; J.M. Loiseaux; L. Mathieu; O. Méplan; E. Merle-Lucotte; H. Nifenecker; F. Perdu; Sylvain David
Annals of Nuclear Energy | 2012
A. Nuttin; P. Guillemin; Adrien Bidaud; N. Capellan; Richard Chambon; Sylvain David; O. Méplan; J.N. Wilson
Archive | 2006
E. Merle-Lucotte; D. Heuer; C. Le Brun; R. Brissot; E. Liatard; O. Méplan; A. Nuttin; L. Mathieu
Transactions of the american nuclear society | 2009
A. Billebaud; Peter Baeten; H. Aït Abderrahim; G. Ban; M. Baylac; G. Bergmans; D. Bondoux; J. Bouvier; S. Chabod; J.M. De Conto; P. Dessagne; G. Gaudiot; J.M. Gautier; G. Granget; G. Heitz; M. Kerveno; A. Kochetkov; B. Laune; F.R. Lecolley; J.L. Lecouey; N. Marie; F. Mellier; Y. Merrer; A. Nuttin; D. Reynet; J.C. Steckmeyer; W. Uyttenhove; Dirk Vandeplassche; F. Vermeersch; G. Vittiglio
Annals of Nuclear Energy | 2011
S.J. Rose; J.N. Wilson; N. Capellan; Sylvain David; P. Guillemin; E. Ivanov; O. Méplan; A. Nuttin; S. Siem
Archive | 2004
E. Merle-Lucotte; L. Mathieu; D. Heuer; A. Billebaud; R. Brissot; Sylvain David; C. Garzenne; O. Laulan; C. Le Brun; D. Lecarpentier; E. Liatard; O. Méplan; F. Michel-Sendis; A. Nuttin; F. Perdu
International Conference on Back-End of the Fuel Cycle : From Research to Solutions (GLOBAL 2001) | 2001
A. Nuttin; D. Heuer; A. Billebaud; R. Brissot; A. Giorni; C. Le Brun; J.M. Loiseaux; O. Méplan; E. Merle; H. Nifenecker; Sylvain David