Extension of the DYN3D/ATHLET code system to SFR applications: models description and initial validation

Author:

Fridman Emil,Nikitin Evgeny,Ponomarev Alexander,Di Nora Anthony,Kliem Soeren,Mikityuk Konstantin

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering

Reference22 articles.

1. Austregesilo, H., Bals, C., Hora, A., Lerchl, G., Romestedt, P., Schöffel, P., von der Cron, D., Weyermann, F., 2016. ATHLET 3.1A Models and Methods 4.

2. System codes benchmarking on a low sodium void effect SFR heterogeneous core under ULOF conditions;Bubelis;Nucl. Eng. Des.,2017

3. Analysis of selected Phenix EOL tests with the FAST code system – Part II: Unprotected phase of the Natural Convection Test;Chenu;Ann. Nucl. Energy,2012

4. Di Nora, V.A., Fridman, E., Mikityuk, K., 2019. Benchmarking ATHLET against TRACE as applied to Superphénix start-up tests, in: International Congress on Advances in Nuclear Power Plants - ICAPP2019, 12.-15.05.2019, Juan-Les-Pins, France. Juan-les-Pins, France, pp. 1–9.

5. Modeling of SFR cores with Serpent–DYN3D codes sequence;Fridman;Ann. Nucl. Energy,2013

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