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Topološka optimizacija mrežnega modela robne plazme
ID Bajt, Tobija (Author), ID Kos, Leon (Mentor) More about this mentor... This link opens in a new window

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Abstract
Za načrtovanje eksperimentov v fuzijskih reaktorjih se uporabljajo orodja za simulacije v plasti robne plazme (SOL, ang. Scrape-Off Layer) v povezavi z jedrom plazme in področjem ob steni. Oblika mreže za popis osnosimetričnega reaktorja sledi magnetnemu ravnovesju, ki ga ustvarijo plazma, toroidalni in poloidalni magneti, s katerimi lahko krmilimo obliko jedra in strganje robne plazme na divertor. Oblika in gostota simulacijske mreže pomembno vpliva na čas in kvaliteto rezultatov. V diplomskem delu je predstavljen razvoj algoritmov pomreževalnega vtičnika za tvorjenje štirikotnih elementov iz osnovne trikotniške mreže z upoštevanjem magnetnega ravnovesja, ki bolje popisuje vodilne enačbe plazme. Razviti vtičnik omogoča topološko optimizacijo mreže za različne konfiguracije reaktorjev in je nadgradnja postopka mreženja TIARA z različnimi gostotami po interesnih območjih. Predstavljeni so rezultati simulacij v okolju SOLPS-ITER.

Language:Slovenian
Keywords:B2US, GGD posplošen način opisa mreže, IDS vmesnik podatkovne strukture, ITER, magnetno ravnovesje, mreža, robna plazma, SOL, SOLPS, štirikotniki, TIARA
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[T. Bajt]
Year:2024
Number of pages:XX, 68 str.
PID:20.500.12556/RUL-158615 This link opens in a new window
UDC:519.876.5:629.062:004.422.63(043.2)
COBISS.SI-ID:199615747 This link opens in a new window
Publication date in RUL:18.06.2024
Views:243
Downloads:70
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Secondary language

Language:English
Title:Topological optimisation of the edge plasma grid
Abstract:
For the design of experiments in fusion reactors, tools are used to simulate the Scrape-Off Layer (SOL) plasma coupled to the plasma core and the first wall. The grid shape for mapping to axisymmetric reactor follows the magnetic equilibrium created by the plasma, and the toroidal and poloidal magnets. The magnets control the shape of the core and the scraping of the edge plasma onto the divertor. The shape and density of the simulation grid have a significant influence on the simulation time and the quality of the results. This work presents the development of algorithms of a meshing plugin for creation of quadrilateral elements from a triangular grid, aligning with the magnetic equilibrium and thus better describe the governing equations of the plasma. The developed plugin enables the topological optimization of the grid for different reactor configurations and is an extension of the TIARA meshing process with different densities in the regions of interest. The results of simulations in the SOLPS-ITER environment are presented.

Keywords:B2US, GGD general grid description, IDS interface data structure, ITER, equilibrium, mesh, edge plasma, SOL, SOLPS, quadrilaterals (quads), TIARA

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