A study of planar toroidal–poloidal beveling of monoblocks on the ITER divertor outer vertical target
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Nuclear and High Energy Physics
Link
http://iopscience.iop.org/article/10.1088/1741-4326/ab4071/pdf
Reference13 articles.
1. Status of the ITER full-tungsten divertor shaping and heat load distribution analysis
2. Heat loads on poloidal and toroidal edges of castellated plasma-facing components in COMPASS
3. Physics conclusions in support of ITER W divertor monoblock shaping
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1. Multiscale particle simulation of the temporal evolution of heat flux into poloidal gaps of castellated divertor with edge-localized modes;Nuclear Fusion;2023-05-15
2. Investigation of ELM-related Larmor ion flux into toroidal gaps of divertor target plates;Nuclear Fusion;2023-04-20
3. Heat load inside the gaps of castellated tungsten blocks with different shapes in KSTAR;Nuclear Materials and Energy;2023-03
4. Sustained W-melting experiments on actively cooled ITER-like plasma facing unit in WEST;Physica Scripta;2021-11-08
5. Thermal loads in gaps between ITER divertor monoblocks: First lessons learnt from WEST;Nuclear Materials and Energy;2021-06
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