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Modelling of Nuclear Reactor Multi-Physics - by Christophe Demazière (Paperback)

Modelling of Nuclear Reactor Multi-Physics - by  Christophe Demazière (Paperback) - 1 of 1
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Highlights

  • Modelling of Nuclear Reactor Multiphysics: From Local Balance Equations to Macroscopic Models in Neutronics and Thermal-Hydraulics is an accessible guide to the advanced methods used to model nuclear reactor systems.
  • Author(s): Christophe Demazière
  • 368 Pages
  • Technology, Power Resources

Description



Book Synopsis



Modelling of Nuclear Reactor Multiphysics: From Local Balance Equations to Macroscopic Models in Neutronics and Thermal-Hydraulics is an accessible guide to the advanced methods used to model nuclear reactor systems. The book addresses the frontier discipline of neutronic/thermal-hydraulic modelling of nuclear reactor cores, presenting the main techniques in a generic manner and for practical reactor calculations.

The modelling of nuclear reactor systems is one of the most challenging tasks in complex system modelling, due to the many different scales and intertwined physical phenomena involved. The nuclear industry as well as the research institutes and universities heavily rely on the use of complex numerical codes. All the commercial codes are based on using different numerical tools for resolving the various physical fields, and to some extent the different scales, whereas the latest research platforms attempt to adopt a more integrated approach in resolving multiple scales and fields of physics. The book presents the main algorithms used in such codes for neutronic and thermal-hydraulic modelling, providing the details of the underlying methods, together with their assumptions and limitations. Because of the rapidly expanding use of coupled calculations for performing safety analyses, the analysists should be equally knowledgeable in all fields (i.e. neutron transport, fluid dynamics, heat transfer).

The first chapter introduces the book's subject matter and explains how to use its digital resources and interactive features. The following chapter derives the governing equations for neutron transport, fluid transport, and heat transfer, so that readers not familiar with any of these fields can comprehend the book without difficulty. The book thereafter examines the peculiarities of nuclear reactor systems and provides an overview of the relevant modelling strategies. Computational methods for neutron transport, first at the cell and assembly levels, then at the core level, and for one-/two-phase flow transport and heat transfer are treated in depth in respective chapters. The coupling between neutron transport solvers and thermal-hydraulic solvers for coarse mesh macroscopic models is given particular attention in a dedicated chapter. The final chapter summarizes the main techniques presented in the book and their interrelation, then explores beyond state-of-the-art modelling techniques relying on more integrated approaches.

Dimensions (Overall): 9.25 Inches (H) x 7.5 Inches (W) x .76 Inches (D)
Weight: 1.39 Pounds
Suggested Age: 22 Years and Up
Sub-Genre: Power Resources
Genre: Technology
Number of Pages: 368
Publisher: Academic Press
Theme: Nuclear
Format: Paperback
Author: Christophe Demazière
Language: English
Street Date: November 18, 2019
TCIN: 89868054
UPC: 9780128150696
Item Number (DPCI): 247-28-6017
Origin: Made in the USA or Imported
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Shipping details

Estimated ship dimensions: 0.76 inches length x 7.5 inches width x 9.25 inches height
Estimated ship weight: 1.39 pounds
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