Towards reliable design-by-analysis for divertor plasma facing components—Guidelines for inelastic assessment (part II: irradiated)
Author:
Funder
Research Councils UK
H2020 Euratom
Publisher
Elsevier BV
Subject
Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering
Reference48 articles.
1. Test Design optimization of the ITER tungsten divertor vertical targets;Hiraia;Fusion Eng. Des.,2018
2. Towards reliable design-by-analysis for divertor plasma facing components –guidelines for inelastic assessment (part 1: unirradiated);Fursdon;Fusion Eng. Des.,2019
3. European DEMO divertor target: operational requirements and material-design interface;You;Nucl. Mater. Energy,2016
4. A hybrid analysis procedure enabling elastic design rule assessment of monoblock-type divertor components;Fursdon;Fusion Eng. Des.,2018
5. Interpretation of the deep cracking phenomenon of tungsten monoblock targets observed in high-heat-flux fatigue tests at 20 MW/m2;Li;Fus. Eng. Des.,2015
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1. Analysis of the nuclear loads on Chromium monoblock divertor target for DEMO;Fusion Engineering and Design;2023-09
2. Recent progress of plasma exhaust concepts and divertor designs for tokamak DEMO reactors;Nuclear Materials and Energy;2023-06
3. Neutronics Assessment of the Spatial Distributions of the Nuclear Loads on the DEMO Divertor ITER-like Targets: Comparison between the WCLL and HCPB Blanket;Applied Sciences;2023-01-29
4. High-heat-flux performance limit of tungsten monoblock targets: Impact on the armor materials and implications for power exhaust capacity;Nuclear Materials and Energy;2022-10
5. Phase-field microstructure-based effective thermal conductivity calculations in tungsten;Nuclear Fusion;2022-05-20
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