The Physical State of Post-Loss-of-Coolant Accident Containment Atmospheres

Author:

Almenas Kazys K.1,Marchello Joseph M.2

Affiliation:

1. University of Maryland Department of Chemical and Nuclear Engineering College Park, Maryland 20742

2. University of Missouri-Rolla, Rolla, Missouri 65401

Publisher

Informa UK Limited

Subject

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

Reference32 articles.

1. “The Marvikken Full Scale Containment Experiments,” MXB-301, AB Atomenergi (Mar. 1977).

2. R. C. SCHMITT et al. “Simulated Design Basis Accident Tests of the Carolinas Virginia Tube Reactor Containment,” IN-1403, Idaho Nuclear Corp. (1970).

3. L. C. RICHARDSON, L. J. FINNEGAN, R. J. WAGNER, and J. M. WANGE, “CONTEMPT-A Computer Program for Predicting the Containment Pressure-Temperature Response to a Loss-of-Coolant Accident,” IDO-17-220, Idaho Operations Office, U.S. Atomic Energy Commission (June 1967).

4. L. L. WHEAT, R. J. WAGNER, G. F. NIEDERANER, and C. F. OBENCHAIN, “CONTEMPT-LT-A Computer Program for Predicting Containment Pressure-Temperature Response to a Loss-of-Coolant Accident,” ANCR-1219, Aerojet Nuclear Company (June 1975).

5. F. BORDELOU and E. MURPHY, “Containment Pressure Analysis Code (COCO),” WCAP-8326, Westinghouse Electric Corporation (1974).

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