Simulation of subcooled flow instability for high flux research reactors using the extended code ATHLET

Author:

Hainoun A,Schaffrath A

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference11 articles.

1. Aritomi, M., Chian, J.H., Mori, M., 1992. Fundamental studies of safety related thermohydraulics of natural circulation boiling parallel channel flow systems under startup conditions (mechanism of geysering in parallel channels), Nucl. Saf. 33(2).

2. The rate of growth (condensation) of vapor bubbles in a turbulent flow;Avdeev;Therm. Eng.,1986

3. Chen, N.C., Wendel, M.W., Yoder, G.L., Jr., 1994. Conceptual design loss-of-coolant accident analysis for the advanced neutron source reactor. Nucl. Technol. 105.

4. Geppert, J., 1997. Strömungsinstabilitü und Grenzen der Kühlbarkeit bei Hochfluß-Forschungsreaktoren, Dissertation, TU München.

5. Hainoun, A., 1994. Modellierung des unterkühlten Siedens in ATHLET und Anwendung in wassergekühlten Forschungsreaktoren, D 294 Diss. Univ. Bochum, Jül-2961.

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