Published 1900
NDS Staff Publication
SIGACE code for generating high-temperature ACE files; validation and benchmarking
Description
A code named SIGACE has been developed as a tool for MCNP users within the scope of a research contract
awarded by the Nuclear Data Section of the International Atomic Energy Agency (IAEA) (Ref: 302-F4-IND-11566 B5-
IND-29641). A new recipe has been evolved for generating high-temperature ACE files for use with the MCNP code.
Under this scheme the low-temperature ACE file is first converted to an ENDF formatted file using the ACELST code
and then Doppler broadened, essentially limited to the data in the resolved resonance region, to any desired higher
temperature using SIGMA1. The SIGACE code then generates a high-temperature ACE file for use with the MCNP
code. A thinning routine has also been introduced in the SIGACE code for reducing the size of the ACE files. The
SIGACE code and the recipe for generating ACE files at higher temperatures has been applied to the SEFOR fast reactor
benchmark problem (sodium-cooled fast reactor benchmark described in ENDF-202/BNL-19302, 1974 document). The
calculated Doppler coefficient is in good agreement with the experimental value. A similar calculation using ACE files
generated directly with the NJOY system also agrees with our SIGACE computed results. The SIGACE code and the
recipe is further applied to study the numerical benchmark configuration of selected idealized PWR pin cell
configurations with five different fuel enrichments as reported by Mosteller and Eisenhart. The SIGACE code that has
been tested with several FENDL/MC files will be available, free of cost, upon request, from the Nuclear Data Section of
the IAEA