Published January 1, 1968 | Version v1
Miscellaneous

RICM, Resonance Absorption in Multi-Region Slab or Square or Hexagonal Lattice

  • 1. Nuclear Code Committee of Japan, Japan Atomic Energy Research Institute, Nippon Atomic Industry Group Co. Ltd. (Japan)

Description

1 - Nature of physical problem solved: Calculates the resonance absorption integral of resonant isotope in a multi-region lattice using the first flight collision probability. The lattice configurations considered are a slab lattice, a square or hexagonal lattice and a cylindricalized lattice with isotropic or perfect reflecting boundary condition. Cases for an isolated rod or plate and homogeneous system can also be treated. 2 - Method of solution: Slowing down of neutrons by each isotope in each region is solved by either exact numerical integration of the slowing down equation or narrow - or wide-resonance approximation. Breit-Wigner's single level formula is used for the resonance cross section and Porter-Thomas distribution of neutron width is taken into account in the unresolved region. 3 - Restrictions on the complexity of the problem: Maximum number of regions: 5; Maximum Number of groups: 100

Availability note (English)

Available on-line: http://www.nea.fr/abs/html/nea-0234.html

Additional details

Publishing Information

Imprint Pagination
[html]

INIS

Country of Publication
Nuclear Energy Agency of the OECD (NEA)
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
40082502
Subject category
S22: GENERAL STUDIES OF NUCLEAR REACTORS;
Resource subtype / Literary indicator
Computer Program Description, Non-conventional Literature
Descriptors DEI
APPROXIMATIONS; BOUNDARY CONDITIONS; BREIT-WIGNER FORMULA; COLLISIONS; COMPUTER PROGRAM DOCUMENTATION; CONFIGURATION; CROSS SECTIONS; EQUATIONS; INTEGRALS; NEUTRONS; PLATES; PORTER-THOMAS DISTRIBUTION; PROBABILITY; R CODES; REACTOR LATTICES; RESONANCE; RESONANCE ABSORPTION; RODS; SLOWING-DOWN; WEBSITES
Descriptors DEC
ABSORPTION; BARYONS; CALCULATION METHODS; COMPUTER CODES; DOCUMENT TYPES; ELEMENTARY PARTICLES; FERMIONS; HADRONS; NUCLEONS; SORPTION

Optional Information

Notes
1 ref.