Three-dimensional numerical simulations of dust mobilization and air ingress characteristics in a fusion reactor during a LOVA event
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering
Reference8 articles.
1. G. Saji, et al., Non-Site Specific Safety Report (NSSR-2) Executive Summary, ITER report, 1997, p. III-28.
2. Experimental study on buoyancy-driven exchange flows through breaches of a Tokamak vacuum vessel in a fusion reactor under the loss-of-vacuum-event condition;Takase;Nucl. Sci. Eng.,1997
3. Three-dimensional numerical simulations of heat transfer in an annular fusel channel with periodic spacer ribs under a fully developed turbulent flow;Takase;Nucl. Technol.,1997
4. The prediction of laminarization with a two-equation model of turbulence;Jones;Int. J. Heat Mass Trans.,1972
5. Handbook of Pulverulence Engineering;Kosaka,1998
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1. A scaling law of pressurisation time in the case of Loss Of Vacuum Accidents (LOVAs): Theoretical and experimental analysis;Fusion Engineering and Design;2019-06
2. Dust remobilization experiments on the COMPASS tokamak;Fusion Engineering and Design;2017-11
3. A novel integrated approach for the hazardous radioactive dust source terms estimation in future nuclear fusion power plants;Heliyon;2016-10
4. Plasma-material Interactions Problems and Dust Creation and Re-suspension in Case of Accidents in Nuclear Fusion Plants: A New Challenge for Reactors like ITER and DEMO;Advanced Surface Engineering Materials;2016-09-24
5. STARDUST-U experiments on fluid-dynamic conditions affecting dust mobilization during LOVAs;Journal of Instrumentation;2016-07-25
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