Recent improvements of the helium-cooled W-based divertor for fusion power plants
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering
Reference18 articles.
1. Design optimization of high-performance helium-cooled divertor plate concept;Wang;Fusion Science and Technology,2009
2. Optimizing the overall configuration of a He-cooled W-alloy divertor for a power plant;Raffray;Fusion Engineering and Design,2009
3. Recent US activities on advanced helium-cooled W-alloy divertor concept for fusion power plants;Tillack;Fusion Engineering and Design,2011
4. Optimization of the ARIES T-tube divertor concept;Burke;Fusion Science and Technology,2011
5. High performance divertor target plate for a power plant: a combination of plate and finger concepts;Wang;Fusion Science and Technology,2011
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2. Integral thermo-mechanical performance analysis of helium-cooled T-tube divertor;Fusion Engineering and Design;2024-02
3. Active Radiative Liquid Lithium Divertor for Handling Transient High Heat Flux Events;Journal of Fusion Energy;2020-09-18
4. Effect of ELMS and disruptions on FNSF plasma-facing components;Fusion Engineering and Design;2018-10
5. Liquid lithium applications for solving challenging fusion reactor issues and NSTX-U contributions;Fusion Engineering and Design;2017-04
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