This book describes the basic knowledge in nuclear, neutron, and reactor physics necessary for understanding the principle and implementation of accelerator driven subcritical nuclear reactors (ADSRs), also known as hybrid reactors.
Since hybrid reactors may contribute to future nuclear energy production, the book begins with a discussion of the general energy problem. It proceeds by developing the elementary physics of neutron reactors, including the basic nuclear physics involved. The book then presents computational methods, with special emphasis on Monte Carlo methods. It examines the specifics of ADSR, starting from the neutron spallation source to safety features. A thorough discussion is given on the size of hybrid reactors, which follows very different constraints from that of critical reactors. The possibility to optimize the source importance is examined in detail. The discussion of the fuel evolution follows with its relevance to safety and to the waste production and incineration. The conditions for having a constant reactivity over sufficiently long lapse of time are also discussed. The book also evaluates a number of practical designs that have been proposed. Finally, the last chapter deals with the examination of proposed and possible waste transmutation policies and the role which could be played by ADSR in this context. The potential advantage of the Thorium cycle is discussed as well as different scenarios that could be used to implement it.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
H Nifenecker, O Meplan, S David
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Vendeur : Majestic Books, Hounslow, Royaume-Uni
Etat : New. pp. ix + 316 Illus. This item is printed on demand. N° de réf. du vendeur 8373366
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Hardcover. Etat : new. Hardcover. Describes the basic knowledge in nuclear, neutron and reactor physics necessary for understanding the principle and implementation of accelerator driven subcritical nuclear reactors (ASDR), also known as hybrid reactors. Since hybrid reactors may contribute to future nuclear energy production, the book begins with a discussion of the general energy problem. It proceeds by developing the elementary physics of neutron reactors, including the basic nuclear physics involved. The calculational methods are presented and discussed, with special emphasis on the Monte Carlo method, which is especially well adapted to the calculation of ASDR and takes full advantage of progress made in computer technology. On the other hand, stress is put on simple analytical models of reactor, which allow one to build a physical intuition of the phenomena involved and are apt to be used as benchmarks for the accuracy of Monte Carlo calculations. The specifics of ASDR are examined, starting from the neutron spallation source to the safety features. A discussion of the fuel evolution follows with its relevance to safety and to the waste production and incineration.The conditions for having a constant reactivity over sufficiently long lapses of time are especially discussed. A number of practical designs which have been proposed are described and evaluated. Finally, the last chapter deals with the examination of proposed and possible waste transmutation policies and the role which could be played by ASDR in this context. The potential advantage of the Thorium cycle is discussed as well as different scenarios, which could be used to implement it. Describes the knowledge useful for understanding accelerator driven subcritical nuclear reactors (ADSRs), also known as hybrid reactors. This book discusses the general energy problem and the elementary physics of neutron reactors. It also examines the specifics of ADSR, from neutron sources to safety features. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9780750307437
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Vendeur : Books Puddle, New York, NY, Etats-Unis
Etat : New. pp. ix + 316 Index. N° de réf. du vendeur 26555945
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Vendeur : moluna, Greven, Allemagne
Etat : New. H Nifenecker, O Meplan, S DavidThis book describes the basic knowledge in nuclear, neutron, and reactor physics necessary for understanding the principle and implementation of accelerator driven subcritical nuclear reactors (ADSRs), also known as hyb. N° de réf. du vendeur 898570997
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Vendeur : Rarewaves.com USA, London, LONDO, Royaume-Uni
Hardback. Etat : New. This book describes the basic knowledge in nuclear, neutron, and reactor physics necessary for understanding the principle and implementation of accelerator driven subcritical nuclear reactors (ADSRs), also known as hybrid reactors.Since hybrid reactors may contribute to future nuclear energy production, the book begins with a discussion of the general energy problem. It proceeds by developing the elementary physics of neutron reactors, including the basic nuclear physics involved. The book then presents computational methods, with special emphasis on Monte Carlo methods. It examines the specifics of ADSR, starting from the neutron spallation source to safety features. A thorough discussion is given on the size of hybrid reactors, which follows very different constraints from that of critical reactors. The possibility to optimize the source importance is examined in detail. The discussion of the fuel evolution follows with its relevance to safety and to the waste production and incineration. The conditions for having a constant reactivity over sufficiently long lapse of time are also discussed. The book also evaluates a number of practical designs that have been proposed. Finally, the last chapter deals with the examination of proposed and possible waste transmutation policies and the role which could be played by ADSR in this context. The potential advantage of the Thorium cycle is discussed as well as different scenarios that could be used to implement it. N° de réf. du vendeur LU-9780750307437
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