Integration of the DRAGON5/DONJON5 codes in the SALOME platform for performing multi-physics calculations in nuclear engineering

Author:

Hébert Alain

Abstract

We are presenting the computer science techniques involved in the integration of codes DRAGON5 and DONJON5 in the SALOME platform. This integration brings new capabilities in designing multi-physics computational schemes, with the possibility to couple our reactor physics codes with thermal-hydraulics or thermo-mechanics codes from other organizations. A demonstration is presented where two code components are coupled using the YACS module of SALOME, based on the CORBA protocol. The first component is a full-core 3D steady-state neuronic calculation in a PWR performed using DONJON5. The second component implement a set of 1D thermal-hydraulics calculations, each performed over a single assembly.

Publisher

EDP Sciences

Reference8 articles.

1. Ribes A. and Caremoli C., “Salomé platform component model for numerical simulation,” COMPSAC 07: Proceeding of the 31st Annual International Computer Software and Applications Conference, pages 553–564, Washington, DC, USA, 2007, IEEE Computer Society. See the website at http://www.salome-platform.org.

2. OMG, “The Common Object Request Broker: Architecture and Specification (Revision 3.0.3).” OMG Document formal/04-03-12, Mar. 2004.

3. Hébert A., Applied Reactor Physics, Presses Internationales Polytechnique, Montréal (2009). See the website at http://www.polymtl.ca/pub/.

4. Marleau G., Hébert A. and Roy R., “New Computational Methods Used in the Lattice Code Dragon,” Proc. Int. Topl. Mtg. on Advances in Reactor Physics, Charleston, USA, March 8-11, 1992, American Nuclear Society. DRAGON can be downloaded from the web site at http://www.polymtl.ca/merlin/.

5. Hébert A., “DRAGON5: Designing Computational Schemes Dedicated to Fission Nuclear Reactors for Space,” Proceedings of Nuclear and Emerging Technologies for Space 2013, Albuquerque, NM, February 25-28, 2013.

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