Published June 1996 | Version v1
Journal article

External exposure model for various geometries of contaminated materials

  • 1. Argonne National Laboratory, IL (United States)

Description

A computational model for external exposure was developed for the U.S. Department of Energy's residual radioactive material guideline computer code (RESRAD) on the basis of dose coefficients from Federal Guidance Report No. 12 and the point-kernel method. This model includes the effects of different materials and exposure distances, as well as source geometry (cover thickness, source depth, area, and shape). A material factor is calculated on the basis of the point-kernel method using material-specific photon cross-section data and buildup factors. This present model was incorporated into RESRAD-RECYCLE (a RESRAD family code used for computing radiological impacts of metal recycling) and is being incorporated into RESRAD-BUILD (a DOE recommended code for computing impacts of building decontamination). The model was compared with calculations performed with the Monte Carlo N-Particle Code (MCNP) and the Microshield code for three different source geometries, three different radionuclides (234U, 238U, and 60Co, representing low, medium, and high energy, respectively), and five different source materials (iron, copper, aluminum, water, and soil). The comparison shows that results of this model are in very good agreement with MCNP calculations (within 5% for 60Co and within 30% for 238U and 234U for all materials and source geometries). Significant differences (greater than 100%) were observed with Microshield for thin 234U sources

Additional details

Publishing Information

Journal Title
Health Physics
Journal Volume
70
Journal Issue
Suppl.6
Journal Page Range
p. 32a.
ISSN
0017-9078
CODEN
HLTPAO

Conference

Title
41. Annual Meeting of the Health Physics Society.
Dates
21-25 Jul 1996.
Place
Seattle, WA (United States).

Optional Information

Secondary number(s)
CONF-9607135--.