Bi-frontal debris bed quenching analysis using counter-current flow limitation conditions

Author:

Lee Kwang Won,Chang Soon Heung

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials

Reference13 articles.

1. Cho, D.H, et al., 1982, “Debris Bed Quenching Studies”, NUREG/CP-0027. Vol., 2, pp. 987–995.

2. Cho, D.H., Armstrong II, D.R. and Chan, S.H., 1984, “On the Pattern of Water Penetration into a Hot Particle Bed”, Nucl. Tech., Vol. 65, pp. 23–31.

3. Ginsberg, T., et al., 1982a, “LWR Steam Spike Phenomenology: Debris Bed Quenching Experiments”, NUREG/CP-2857, BNL-NUREG-51571.

4. Ginsberg, T., et al., 1982b, “Transient Core Debris Bed Heat Removal Experiments and Analysis”, NUREG/CP-0027, Vol. 2, pp. 996–1009.

5. Ginsberg, T., et al., 1983, “Core Debris Quenching Heat Transfer Rates under Top-and Bottom-Reflood Conditions”, Proceedings: International Meeting on LWR Severe Accident Evaluation, Vol. 2, Paper TS-18.7, Cambridge. MA, August 28–September 1.

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1. A simple model for the quench front propagation in a highly superheated particle bed;International Journal of Heat and Mass Transfer;2019-06

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