Physics of fast reactor operation and design
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Physics of fast reactor operation and design proceedings of an international conference at the Institution of Civil Engineers, London, SW 1, 24-26 June 1969.

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Published by British Nuclear Energy Society in London .
Written in English

Subjects:

  • Fast reactors -- Congresses.

Book details:

Edition Notes

ContributionsBritish Nuclear Energy Society., Institution of Civil Engineers (Great Britain)
Classifications
LC ClassificationsTK9202 .P48
The Physical Object
Pagination368 p.
Number of Pages368
ID Numbers
Open LibraryOL5741977M
LC Control Number70854065

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/books books Thomas Telford Publishing /tpofroad THE PHYSICS OF FAST REACTOR OPERATION AND DESIGN THE PHYSICS OF FAST REACTOR OPERATION AND DESIGN Thomas Telford Publishing © The British Nuclear Energy Society /tpofroad PAPER PRESENTATION AND DISCUSSION Presentation .   That is why this method lends itself to fast reactors but not to thermal reactors. That it is very hard to perturb the flux away from its fundamental shape is relatively reasonable in a region of two or three fuel assemblies. Dr H. W. Kusters (Karlsruhe, G-ermany) I do not agree that in a fast reactor it is not possible to obtain flux tilting.   /books books Thomas Telford Publishing /tpofroad THE PHYSICS OF FAST REACTOR OPERATION AND DESIGN THE PHYSICS OF FAST REACTOR OPERATION AND DESIGN Thomas Telford Publishing © The British Nuclear Energy Society /tpofroad PRESENTATION AND DISCUSSION: PAPERS – Presentation Discussion Presentation Performance of a step-core geometry for a Fast Breeder Reactor. The book also includes radiation physics, shielding techniques and an analysis of shield design, neutron monitoring and core operations. Those involved in the development and operation of nuclear reactors and the fuel cycle will gain a thorough understanding of all elements of nuclear reactor physics, thus enabling them to apply the analysis and solution methods provided to their own work and research.

This important book: Provides a comprehensive introduction to the fundamental concepts of nuclear reactor physics and engineering Contains information on nuclear reactor kinetics and reactor design analysis Presents illustrative examples to enhance understanding Offers self-contained derivation of fluid conservation equations Written for undergraduate and graduate students in nuclear engineering and practicing engineers, Nuclear Reactor Physics .   Nuclear Reactor Physics and Engineering offers information on analysis, design, control, and operation of nuclear reactors. The author—a noted expert on the topic—explores the fundamentals and presents the mathematical formulations that are grounded in differential equations and linear algebra. . Show all. JOHN C. LEE, P H D, is professor in the Department of Nuclear . Nuclear Reactor Physics and Engineering offers information on analysis, design, control, and operation of nuclear reactors. The author―a noted expert on the topic―explores the fundamentals and presents the mathematical formulations that are grounded in differential equations and linear s: 1.   Fundamentals of Nuclear Reactor Physics offers a one-semester treatment of the essentials of how the fission nuclear reactor works, the various approaches to the design of reactors, and their safe and efficient operation. It provides a clear, general overview of atomic physics from the standpoint of reactor functionality and design, including the sequence of fission reactions and their .

Description. Advanced Reactors: Physics, Design and Economics contains the proceedings of the International Conference held at Atlanta, Georgia on September , Organized according to the sessions of the conference, this book first describes the national programs for the development of advanced reactors. This book is composed of nine chapters that also consider their control, calibration, and experimentation. The opening chapters present the general problems of reactor operation and the principles of reactor control and operation. Reactor Operation covers the theoretical aspects and design information of nuclear reactors. This book is composed of nine chapters that also consider their control, calibration, and experimentation.   The largest portion of the book focuses on reactor physics and fuel design, but there is also a relatively thorough discussion of core design, plant design, and safety. While most of the book focuses on sodium-cooled fast reactors (which is to be expected, as this is the most mature of the fast reactor concepts currently under development), there is some information and discussion of lead- Reviews: 2. Fundamentals of Nuclear Reactor Physics offers a one-semester treatment of the essentials of how the fission nuclear reactor works, the various approaches to the design of reactors, and their safe and efficient operation. It provides a clear, general overview of atomic physics from the standpoint of reactor functionality and design, including the sequence of fission reactions and their energy release.