Fission Product Transport Behavior

Author:

Kress T. S.1,Beahm E. C.1,Weber C. F.1,Parker G. W.1

Affiliation:

1. Oak Ridge National Laboratory P.O. Box 2009, Oak Ridge, Tennessee 37831-8088

Publisher

Informa UK Limited

Subject

Condensed Matter Physics,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference18 articles.

1. A. L. WRIGHT and P. C. ARWOOD, “Summary of Posttest Aerosol Code-Comparison Results for LWR Aerosol Containment (LACE) LA3,” LACE TR-024, ORNL/TM-492, Oak Ridge National Laboratory (June 1988).

2. T. J. HEAMES et al. “VICTORIA: A Mechanistic Model of Radionuclide Behavior in the Reactor Coolant System Under Severe Accident Conditions,” NUREG/CR-5545, SAND90-0756, Sandia National Laboratories (Oct. 1990).

3. RAFT: A Computer Model for Formation and Transport of Fission Product Aerosols in LWR Primary Systems

4. E. C. BEAHM, M. L. BROWN, and W. E. SHOCKLEY, “Adsorption of Iodine on Aerosols,” ORNL/M-1079, ACE-TR-135, Oak Ridge National Laboratory (Sep. 1990).

5. R. ALENLJUNG et al. “The Influence of Chemistry on Core Melt Accidents,” Final Report of the NKA Project ADTI-150, Swedish Nuclear Power Inspectorate (Sep. 1990).

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