EPJ Web of Conferences (Jan 2017)

AREVA Developments for an Efficient and Reliable use of Monte Carlo codes for Radiation Transport Applications

  • Chapoutier Nicolas,
  • Mollier François,
  • Nolin Guillaume,
  • Culioli Matthieu,
  • Mace Jean-Reynald

DOI
https://doi.org/10.1051/epjconf/201715306016
Journal volume & issue
Vol. 153
p. 06016

Abstract

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In the context of the rising of Monte Carlo transport calculations for any kind of application, AREVA recently improved its suite of engineering tools in order to produce efficient Monte Carlo workflow. Monte Carlo codes, such as MCNP or TRIPOLI, are recognized as reference codes to deal with a large range of radiation transport problems. However the inherent drawbacks of theses codes - laboring input file creation and long computation time - contrast with the maturity of the treatment of the physical phenomena. The goals of the recent AREVA developments were to reach similar efficiency as other mature engineering sciences such as finite elements analyses (e.g. structural or fluid dynamics). Among the main objectives, the creation of a graphical user interface offering CAD tools for geometry creation and other graphical features dedicated to the radiation field (source definition, tally definition) has been reached. The computations times are drastically reduced compared to few years ago thanks to the use of massive parallel runs, and above all, the implementation of hybrid variance reduction technics. From now engineering teams are capable to deliver much more prompt support to any nuclear projects dealing with reactors or fuel cycle facilities from conceptual phase to decommissioning.