Progress on source term evaluation of accidental events in the experimental fusion installation ITER
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering
Reference30 articles.
1. The ASTEC Integral Code for Severe Accident Simulation
2. R&D on support to ITER safety assessment
3. Adaptation of the ASTEC code system to accident scenarios in fusion installations
4. Results of two-phase flow experiments with an integrated Ingress-of-Coolant Event (ICE) test facility for ITER safety
5. Modeling of a confinement bypass accident with CONSEN, a fast-running code for safety analyses in fusion reactors
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1. Requirements for the EUCLID-F Integral Code for the Deterministic Analysis of Accidents in Fusion Reactors;Physics of Atomic Nuclei;2023-12
2. Contribution to a better evaluation of the dust speciation in case of an accident in ITER;Fusion Engineering and Design;2017-11
3. In-situanalysis of optically thick nanoparticle clouds;Applied Physics Letters;2017-04-24
4. A novel integrated approach for the hazardous radioactive dust source terms estimation in future nuclear fusion power plants;Heliyon;2016-10
5. Fully Hydrogenated Beryllium Nanoclusters;Journal of the American Chemical Society;2016-02-29
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