Monte Carlo Simulation Of The Benchmark Experiment On Neutron Transport In Thick Sodium
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National Conference on Radiation Shielding & Protection
Author | : |
Publisher | : Allied Publishers |
Total Pages | : 330 |
Release | : 1996 |
Genre | : Nuclear reactors |
ISBN | : 9788170235415 |
Energy Research Abstracts
Author | : |
Publisher | : |
Total Pages | : 1032 |
Release | : 1994 |
Genre | : Power resources |
ISBN | : |
Semiannual, with semiannual and annual indexes. References to all scientific and technical literature coming from DOE, its laboratories, energy centers, and contractors. Includes all works deriving from DOE, other related government-sponsored information, and foreign nonnuclear information. Arranged under 39 categories, e.g., Biomedical sciences, basic studies; Biomedical sciences, applied studies; Health and safety; and Fusion energy. Entry gives bibliographical information and abstract. Corporate, author, subject, report number indexes.
Government Reports Annual Index
Author | : |
Publisher | : |
Total Pages | : 882 |
Release | : 1975 |
Genre | : Government reports announcements & index |
ISBN | : |
Monte Carlo Principles and Neutron Transport Problems
Author | : Jerome Spanier |
Publisher | : Courier Corporation |
Total Pages | : 258 |
Release | : 2008-01-01 |
Genre | : Mathematics |
ISBN | : 0486462935 |
This two-part treatment introduces the general principles of the Monte Carlo method within a unified mathematical point of view, applying them to problems in neutron transport. It describes several efficiency-enhancing approaches, including the method of superposition and simulation of the adjoint equation based on reciprocity. The first half of the book presents an exposition of the fundamentals of Monte Carlo methods, examining discrete and continuous random walk processes and standard variance reduction techniques. The second half of the text focuses directly on the methods of superposition and reciprocity, illustrating their applications to specific neutron transport problems. Topics include the computation of thermal neutron fluxes and the superposition principle in resonance escape computations.