Thermodynamic treatment of noble metal fission products in nuclear fuel

Author:

Kaye M.H.,Lewis B.J.,Thompson W.T.

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics

Reference58 articles.

1. C.M. Allison, G.A. Berna, L.J. Siefken, SCDAP/MOD1 Theory and Models, FIN No. A6360: Idaho National Engineering Laboratory, January 1985.

2. Role of Surface Vaporization in Low-Volatility Fission Product Release Experiments

3. W.J. Camp, M.F. Young, J.L. Tomkins, J.E. Kelly, P.J. Maudlin, R.J. Henninger, MELPROG-PWR/MODO: A Mechanistic Code for Analysis of Reactor Core Melt Progression and Vessel Attack Under Severe Accident Conditions, NUREG/CR-4909 SAND85-0237 R3: Sandia National Laboratories, April 1987.

4. Vapor transport of fission products under nuclear accident conditions

5. M. Ramamurthi, M.R. Kuhlman, Refinement of CORSOR – An Empirical In-Vessel Fission Product Release Model, Battelle report, US Nuclear Regulatory Commission, October 1990.

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