A MELCOR model of Fukushima Daiichi Unit 1 accident

Author:

Sevón Tuomo

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering

Reference24 articles.

1. Towards an European consensus on possible causes of MCCI ablation anisotropy in an oxidic pool;Cranga;Ann. Nucl. Energy,2014

2. EPRI, 2013. Fukushima Technical Evaluation: Phase 1 – MAAP5 Analysis. Electric Power Research Institute. http://www.epri.com/abstracts/Pages/ProductAbstract.aspx?ProductId=000000000001025750.

3. EPRI, 2014. Modular Accident Analysis Program (MAAP) – MELCOR Crosswalk: Phase 1 Study. Electric Power Research Institute. http://www.epri.com/abstracts/Pages/ProductAbstract.aspx?ProductId=000000003002004449.

4. MELCOR simulations of the severe accident at the Fukushima Daiichi Unit 1 reactor;Gauntt;Nucl. Technol.,2014

5. GE, 1978. Core Design and Operating Data for Cycles 1 and 2 of Peach Bottom 2. General Electric. Topical report EPRI NP-563. http://www.osti.gov/bridge/servlets/purl/6561294/6561294.pdf.

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2. Study of the DVI-LOCA in the AP1000-like reactor with MELCOR code;Annals of Nuclear Energy;2024-06

3. Gas phase interactions between tellurium and organic material in severe nuclear accident scenarios;Annals of Nuclear Energy;2024-03

4. References;Handbook on Thermal Hydraulics in Water-Cooled Nuclear Reactors;2024

5. References;Handbook on Thermal Hydraulics in Water-Cooled Nuclear Reactors;2024

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