DocumentCode :
9293
Title :
Lazy Cohomology Generators Enable the Use of Complementarity for Computing Halo Current Resistive Distribution in Fusion Reactors
Author :
Bettini, P. ; Specogna, Ruben
Author_Institution :
Dipt. di Ing. Ind., Univ. di Padova, Padua, Italy
Volume :
50
Issue :
2
fYear :
2014
fDate :
Feb. 2014
Firstpage :
489
Lastpage :
492
Abstract :
This paper presents a methodology to efficiently calculate the resistive distribution of halo currents in 3-D conductive structures that surround the plasma in magnetic confinement fusion devices. The domain of the problem is so complicated that two complementary formulations are used to monitor the discretization error. It turns out that thousands of cohomology generators are needed by the electric vector potential electrokinetic formulation, which would require an enormous amount of memory and computing power to retrieve them even using state-of-the-art algorithms. To solve this challenging problem, we present a novel algorithm to generate the absolute second cohomology group generators exploiting the idea of lazy cohomology generators stored as sparse vectors. The proposed algorithm allows a saving of between four and five orders of magnitude computational time.
Keywords :
Tokamak devices; fusion reactor design; plasma simulation; plasma toroidal confinement; plasma transport processes; 3-D conductive structures; absolute second cohomology group generators; discretization error; electric vector potential electrokinetic formulation; fusion reactor design; halo current resistive distribution; lazy cohomology generators; magnetic confinement fusion devices; magnitude computational time; sparse vectors; tokamak operation; Complexity theory; Electric potential; Equations; Generators; Linear systems; Plasmas; Vectors; Cohomology computation; fusion reactor design; halo current;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2013.2281506
Filename :
6749185
Link To Document :
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