Bertrand Mercier Mercier Simple Models for Understanding Nuclear Reactor Physics

Simple Models for Understanding Nuclear Reactor Physics

von Bertrand Mercier

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Beschreibung

This book provides engineers with a comprehensive understanding of nuclear reactor physics and neutronics, emphasizing the importance of simple models to validate complex computational results. It explains the rationale behind neutron slowing down and offers a straightforward method to evaluate the resonance escape probability in Fermi's 4-factors formula. The book includes exercises to assess the remaining three factors and demonstrates how to derive the diffusion approximation from the Boltzmann equation. It covers both one-group and two-group diffusion models, applying them to predict the reactivity of a nuclear reactor core. Special attention is given to the selection of the migration area. Additionally, the book addresses delayed neutrons, reactor kinetics, fission product poisoning, fuel evolution, fuel management, critical size, temperature effects, and xenon oscillations. Originally written for students, it contains 28 exercises with solutions provided in the appendix, making it an invaluable resource for both learning and practical application in the field.


This book provides engineers with a comprehensive understanding of nuclear reactor physics and neutronics, emphasizing the importance of simple models to validate complex computational results. It explains the rationale behind neutron slowing down and offers a straightforward method to evaluate the resonance escape probability in Fermi's 4-factors formula. The book includes exercises to assess the remaining three factors and demonstrates how to derive the diffusion approximation from the Boltzmann equation. It covers both one-group and two-group diffusion models, applying them to predict the reactivity of a nuclear reactor core. Special attention is given to the selection of the migration area. Additionally, the book addresses delayed neutrons, reactor kinetics, fission product poisoning, fuel evolution, fuel management, critical size, temperature effects, and xenon oscillations. Originally written for students, it contains 28 exercises with solutions provided in the appendix, making it an invaluable resource for both learning and practical application in the field.


Introduces a new approach to reactivity feedback and temperature effects Provides detailed explanations about fuel poisoning, conversion, and fuel management Explains how to manage the criticality risk in fuel cycle facilities

Autor*in

Bertrand Mercier

Themen in »Simple Models for Understanding Nuclear Reactor Physics«

Nuclear Chain Reaction Principle Neutron Cross-Section Neutron Transport Equation Principle of Nuclear Fission 1-Group Diffusion Model Resonance Escape Factor Nuclear Reactor Kinetics Xenon Oscillations Fission Product Poisoning Reactor Core Reactivity

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Details

ISBN: 9783031985317
Verlag: Springer International Publishing
Erscheinung: 12.10.2025

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