Published 1999 | Version v1
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Effective modeling of hydrogen mixing and catalytic recombination in containment atmosphere with an Eulerian Containment Code

  • 1. Ansaldo Nuclear Division, Genova (Italy)
  • 2. University of PISA, DCMN, Pisa (Italy)
  • 3. Gesellschaft fuer Anlagen- und Reacktorsichenerheit, GRS, mbH, Koeln (Germany)

Description

Large amounts of hydrogen can be generated in the containment of a nuclear power plant following a postulated accident with significant fuel damage. Different strategies have been proposed and implemented to prevent violent hydrogen combustion. An attractive one aims to eliminate hydrogen without burning processes; it is based on the use of catalytic hydrogen recombiners. This paper describes a simulation methodology which is being developed by Ansaldo, to support the application of the above strategy, in the frame of two projects sponsored by the Commission of the European Communities within the IV Framework Program on Reactor Safety. Involved organizations also include the DCMN of Pisa University (Italy), Battelle Institute and GRS (Germany), Politechnical University of Madrid (Spain). The aims to make available a simulation approach, suitable for use for containment design at industrial level (i.e. with reasonable computer running time) and capable to correctly capture the relevant phenomenologies (e.g. multiflow convective flow patterns, hydrogen, air and steam distribution in the containment atmosphere as determined by containment structures and geometries as well as by heat and mass sources and sinks). Eulerian algorithms provide the capability of three dimensional modelling with a fairly accurate prediction, however lower than CFD codes with a full Navier Stokes formulation. Open linking of an Eulerian code as GOTHIC to a full Navier Stokes CFD code as CFX 4.1 allows to dynamically tune the solving strategies of the Eulerian code itself. The effort in progress is an application of this innovative methodology to detailed hydrogen recombination simulation and a validation of the approach itself by reproducing experimental data. (author)

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Part of:
Proceedings of the 2nd CSNI Specialist Meeting on Simulators and Plant Analysers

Additional details

Publishing Information

ISBN
951-38-5269-5
Imprint Title
Proceedings of the 2nd CSNI Specialist Meeting on Simulators and Plant Analysers
Imprint Pagination
601 p.
Journal Page Range
p. 320-334
Report number
VTT-SYMP--194

Conference

Title
2. CSNI Specialist Meeting on Simulators and Plant Analysers
Dates
29 Sep - 2 Oct 1999
Place
Espoo (Finland)

Optional Information

Notes
4 refs.