Title of article
Self-field calculation of CICC with fast direct Biot–Savart integration
Author/Authors
Wang، نويسنده , , Xu and Li، نويسنده , , Yingxu and Gao، نويسنده , , Yuanwen and Zhou، نويسنده , , Youhe، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
14
From page
473
To page
486
Abstract
ITER magnetic device (Tokamak) requires a strong magnetic field produced by charged cable conductors and external sources to arrive at stable and reliable magnetic confinement performance. Before manufacturing and assembling conductors, preliminary analysis of self-field induction is helpful for reducing the cost of varying-parameter experiments. Spatial helix shape of numerous strand elements and multi-level twist of the finalized cable, known as CICC type, make it unpractical to direct use finite-element methods and other numerical procedures for self-field calculation. An algorithm FDBS (fast direct Biot–Savart integration) is proposed to surmount this difficulty, which improves the traditional method (DBS, direct implementing Biot–Savart law for all strand sources) in terms of computational effort. As such the complexity reduces to O(N) from the original O(N2) and speed enhancement is achieved in the parallel computation environment. FDBS calculates out a detailed self-field profile for the uncompressed ITER TF conductors carrying uniform current at each cabling level; the layered self-field distribution becomes more indistinct for higher level subcable.
Keywords
ITER CICC , Hierarchical Structure , Self-field calculation , Fast direct Biot–Savart integration
Journal title
Fusion Engineering and Design
Serial Year
2014
Journal title
Fusion Engineering and Design
Record number
2370589
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