Theory and models of material erosion and lifetime during plasma instabilities in a tokamak environment
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering
Reference21 articles.
1. Disruption Damage to Plasma-Facing Components from Various Plasma Instabilities
2. Materials effects and design implications of disruptions and off-normal events in ITER
3. A. Hassanein, I. Konkashbaev, J. Nucl. Mater. 273 (1999) 326.
4. A. Hassanein, I. Konkashbaev, Physics of Collisionless Scrape-Off-Layer Plasma During Normal and Off-Normal Tokamak Operating Conditions, Argonne National Laboratory Report ANL/FPP/TM-296, March, 1999.
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1. Numerical study of influence of J × B force on melt layer under conditions relevant to ITER ELMs;Chinese Physics B;2019-04
2. Effect of Dimensional Changes on Plasma Characteristics in Electrothermal Capillary Discharges for Optimized Performance in Fusion Pellet Injection;Plasma Physics Reports;2018-08-01
3. Numerical study of thermal erosion and topographical change of divertor target plates induced by type-I edge-localized modes;Acta Physica Sinica;2017
4. Ablation of Fusion Materials Exposed to High Heat Flux in an Electrothermal Plasma Discharge as a Simulation for Hard Disruption;Journal of Fusion Energy;2013-10-18
5. Thermal Spray Coatings for Fusion Applications—Review;Journal of Thermal Spray Technology;2007-03-14
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