Phenomenological Modeling Approach to Anisotropic Ablation in Molten Core–Concrete Interactions
Author:
Affiliation:
1. GE Hitachi Nuclear Energy, Core and Fuels Engineering, 3901 Castle Hayne Road, Wilmington, North Carolina 28402
2. University of Wisconsin–Madison, Nuclear Engineering and Engineering Physics, 1500 Engineering Drive, Madison, Wisconsin 53706
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/NT15-157
Reference13 articles.
1. M. FARMER et al. “2-D Core Concrete Interaction (CCI) Tests: Final Report,” OECD/MCCI-2010-TR06, Argonne National Laboratory (2006).
2. M. FARMER et al. “Category 3 Tests to Generate 2-D Core-Concrete Interaction Data: Final Report,” OECD/MCCI-2010-TR06, Argonne National Laboratory (2010).
3. M. FARMER et al. “Category 4 Integral Test to Validate Severe Accident Codes: Final Report,” OECD/MCCI-2010-TR05, Argonne National Laboratory (2010).
4. D. THOMPSON et al. “ACE Phase C Final Report: Volume I—MCCI Thermalhydraulic Results,” EPRI/ACE-TR-C42, Argonne National Laboratory (1997).
5. M. LEE and R. BARI, “International Standard Problem No. 24, ISP-24, SURC-4 Experiment on Core-Concrete Interaction,” OECD/CSNI Report No. 155, Vol.1, Organisation for Economic Co-operation and Development, Committee on the Safety of Nuclear Installations (1988).
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