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Thermal-hydraulic and aerosol containment phenomena modelling in ASTEC severe accident computer code
Authors:Ivo Kljenak  Maik Dapper  Luis E. Herranz  Joan Fontanet
Affiliation:a Jo?ef Stefan Institute, Jamova cesta 39, SI-1000 Ljubljana, Slovenia
b Ruhr-Universität Bochum, Institute for Energy Systems and Energy Economics, Germany
c Nuclear Research Institute ?e?, Czech Republic
d Centro de Investigaciones Energeticas Medio Ambientales y Tecnologicas, Madrid, Spain
Abstract:Transients in containment systems of different scales (Phebus.FP containment, KAEVER vessel, Battelle Model Containment, LACE vessel and VVER-1000 nuclear power plant containment) involving thermal-hydraulic phenomena and aerosol behaviour, were simulated with the computer integral code ASTEC. The results of the simulations in the first four facilities were compared with experimental results, whereas the results of the simulated accident in the VVER-1000 containment were compared to results obtained with the MELCOR code. The main purpose of the simulations was the validation of the CPA module of the ASTEC code. The calculated results support the applicability of the code for predicting in-containment thermal-hydraulic and aerosol phenomena during a severe accident in a nuclear power plant.
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