Published September 1973 | Version v1
Journal article

Singular eigenfunction solution of the monoenergetic neutron transport equation for finite radially reflected critical cylinders

Description

The normal mode expansion technique is applied to the transformed mono-energetic integral transport equation to develop a solution for the rotationally invariant and axially infinite critical two-region cylinder with a finite outer reflector boundary. The model assumes isotropic scattering and identical neutron mean-free-paths in the core and reflector regions. The solution in terms of singular integral equations is obtained by applying a completeness theorem found for the singular eigenfunctions. Numerical results for a variety of core and reflector multiplying properties and reflector thicknesses are presented and compared with the results of other methods. The completeness inherent in this solution and the high precision in the numerical calculations provide results which may be used as analytic standards for this problem.112

Additional details

Identifiers

Publishing Information

Journal Title
Nuclear Science and Engineering
Journal Volume
52
Journal Issue
1
Series
Nucl. Sci. Eng.
Journal Page Range
1-11
ISSN
0029-5639

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
5098275
Subject category
S22: GENERAL STUDIES OF NUCLEAR REACTORS;
Descriptors DEI
CRITICAL SIZE; CRITICALITY; CYLINDRICAL CONFIGURATION; EIGENFUNCTIONS; INTEGRAL EQUATIONS; NEUTRON FLUX; NEUTRON TRANSPORT THEORY; REACTOR KINETICS
Descriptors DEC
CONFIGURATION; EQUATIONS; FUNCTIONS; RADIATION FLUX; SIZE; TRANSPORT THEORY

Optional Information

Notes
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