Published November 2003 | Version v1
Miscellaneous Open

Comparison of the updated solutions of the 6th dynamic AER Benchmark - main steam line break in a NPP with WWER-440

Creators

  • 1. Forschungszentrum Rossendorf, Institute of Safety Research, P.O.B. 51 01 19, D-01314 Dresden (Germany)

Description

The 6th dynamic AER Benchmark is used for the systematic validation of coupled 3D neutron kinetic/thermal hydraulic system codes. It was defined at The 10th AER-Symposium. In this benchmark, a hypothetical double ended break of one main steam line at full power in a WWER-440 plant is investigated. The main thermal hydraulic features are the consideration of incomplete coolant mixing in the lower and upper plenum of the reactor pressure vessel and an asymmetric operation of the feed water system. For the tuning of the different nuclear cross section data used by the participants, an isothermal re-criticality temperature was defined. The paper gives an overview on the behaviour of the main thermal hydraulic and neutron kinetic parameters in the provided solutions. The differences in the updated solution in comparison to the previous ones are described. Improvements in the modelling of the transient led to a better agreement of a part of the results while for another part the deviations rose up. The sensitivity of the core power behaviour on the secondary side modelling is discussed in detail (Authors)

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Part of:
Proceedings of the thirteenth Symposium of Atomic Energy Research

Additional details

Publishing Information

Publisher
Kiadja and KFKI Atomenergia Kutatointezet
Imprint Place
Budapest (Hungary)
ISBN
963-372-630-1
Imprint Title
Proceedings of the thirteenth Symposium of Atomic Energy Research
Imprint Pagination
[833 p.]
Journal Page Range
p. 413-444
Report number
INIS-SK--2003-033

Conference

Title
13. Atomic Energy Research Symposium on WWER Physics and Reactor Safety
Dates
22-26 Sep 2003
Place
Dresden (Germany)

Optional Information

Notes
5 refs., 48 figs., 3 tabs. Imprint:Next corporations organizations: VTT Energy, Technical Research Centre of Finland, P.O.Box 1604, FIN-02044 VTT (Finland); Fortum Nuclear Services Ltd., Rajatorpantie 8, Vantaa, POB 10-FIN-00048 FORTUM (FI); NPP Kozloduy, NPP 3321, Kozloduy (BG); Studsvik Scandpower AS (Norway); KFKI Atomic Energy Research Institute, Reactor Analysis Laboratory, H-1525 Budapest 114, POB 49 (Hungary); FZR - Forschungszentrum Rossendorf, Institute of Safety Research,P.O.Box 510119, D-01314 Dresden (Germany); Physics Faculty of Sofia University, Sofia (Bulgaria); NPP Kozloduy (Bulgaria); Framatome ANP GmbH, Erlangen (Germany); State Scientific and Technical Centre on Nuclear and Radiation Safety - 'SSTC N+RS', Radgospna st. 35-37, 03142 Kyiv (Ukraine); 'TUEV ENERGY CONSULT/TUEV' Sueddeutschland Bau und Betrib GmbH, Westendstrasse 199, 80868 Muenchen (Germany); Experimental +Design organization 'Gidropress', Podolsk (Russian Federation); Lappeenranta University of Technology, LUT, P.O.Box 20, FIN-53851 Lappeenranta (Finland); GRS - Gesellschaft fuer Anlagen - und Reactorsicherheit mbH (Germany); SE, a.s. - AE Bohunice, 919 31 Jaslovske Bohunice (Slovakia)