Interpretation of fission-product transport behaviour in the Phébus FPT0 and FPT1 tests

Author:

Kissane M.P.,Drosik I.

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

Reference38 articles.

1. Fission-product transport modelling in the ASTEC integral code: the status of the SOPHAEROS module;Alpy,2003

2. Anderson, A.B., Auvinen, A., Bottomley, P.D.W., Bryan, C.J., Freemantle, N.E., Hieraut, J.P., Jokiniemi, J.K., Kingsbury, A.F., Tuson, A.T., 2000. Revaporisation Tests on Samples From Phebus Fission Products: Final Report. European Commission Fourth Framework Report ST:RVP(00)-P029.

3. Vaporisation rates of CsOH and CsI in conditions simulating a severe nuclear accident;Auvinen;J. Aerosol Sci.,2000

4. Use of a simple model for the interpretation of experimental data on particle resuspension in turbulent flows;Biasi;J. Aerosol Sci.,2001

5. Bixler, N.E., 1998. VICTORIA 2.0: a mechanistic model for radionuclide behavior in a nuclear reactor coolant system under severe accident conditions. US NRC Report NUREG/CR-6131 and SAND93-2301.

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