Impact of Secondary Effects on the Reduction of Fission Product Source Terms in Class IX Reactor Accidents
Author:
Affiliation:
1. Oak Ridge National Laboratory, Chemical Technology Division, P.O. Box X, Oak Ridge, Tennessee 37830
Publisher
Informa UK Limited
Subject
Condensed Matter Physics,Nuclear Energy and Engineering,Nuclear and High Energy Physics
Link
https://www.tandfonline.com/doi/pdf/10.13182/NT81-A32617
Reference11 articles.
1. M. ROGOVIN and G. T. FRAMPTON, Jr. “Three Mile Island, A Report to the Commissioners and to the Public,” Nuclear Regidatory Commission Special Inquiry Group (Jan. 1980).
2. “Reactor Safety Study, An Assessment of Accident Risks in U.S. Commercial Nuclear Power Plants,” WASH-1400 (NUREG 75/014), U.S. Atomic Energy Commission (Oct. 1975).
3. R. A. LORENZ, J. L. COLLINS, and A. P. MALINAUSKAS, “Fission Product Source Terms for LWR Loss-of-Coolant Accident,” NUREG/CR-1288 (ORNL/NUREG/TM-321), U.S. Nuclear Regulatory Commission (July 1980).
4. M. ROGOVIN and G. T. FRAMPTON, Jr. “Three Mile Island, A Report to the Commissioners and to the Public,” Vol. II. Part 2, Table II-57, p. 527, Nuclear Regulatory Commission Special Inquiry Group (Jan. 1980).
5. R. K. HILLIARD and L. F. COLEMAN, “Natural Transport Effects on Fission Product Behavior in the Containment Systems Experiment,” BNWL-1457, Battelle-Pacific Northwest Laboratories (Dec. 1970).
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