Non-axisymmetric magnetic field due to ferromagnetic inserts and helium cooled solid breeder test blanket modules in ITER

An analysis is carried out on the three-dimensional modeling and computation of the magnetic field in ITER. The commercial finite element code ANSYS-EM is employed for this study. In particular, an emphasis is put on the analysis of the characteristics of non-axisymmetric magnetic fields produced by...

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Veröffentlicht in:Fusion engineering and design 2011-03, Vol.86 (2), p.127-133
Hauptverfasser: Oh, Dong Keun, Jhang, Hogun, Lee, Deok Kyo, Ku, Duck Young, Cho, Seungyon
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container_end_page 133
container_issue 2
container_start_page 127
container_title Fusion engineering and design
container_volume 86
creator Oh, Dong Keun
Jhang, Hogun
Lee, Deok Kyo
Ku, Duck Young
Cho, Seungyon
description An analysis is carried out on the three-dimensional modeling and computation of the magnetic field in ITER. The commercial finite element code ANSYS-EM is employed for this study. In particular, an emphasis is put on the analysis of the characteristics of non-axisymmetric magnetic fields produced by ferromagnetic materials, including ferromagnetic inserts (FIs) and helium cooled solid breeder test blanket modules (TBMs). It is found that the ITER design requirement for toroidal field ripple is violated by the presence of TBMs, even in the presence of FIs. Calculations of TBM-produced error fields also show that TBM produces a significant error field at q = 2 surface exceeding the ITER design requirement. Discussions are made of the potential implication of the TBM-produced non-axisymmetric fields on plasma performance and the design of a TBM emulation system.
doi_str_mv 10.1016/j.fusengdes.2010.09.026
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source Elsevier ScienceDirect Journals
subjects ANSYS-EM
Applied sciences
Blanketing
Controled nuclear fusion plants
Design engineering
Energy
Energy. Thermal use of fuels
Error field
Errors
Exact sciences and technology
Ferromagnetic materials
Helium cooled
Inserts
Installations for energy generation and conversion: thermal and electrical energy
ITER
Magnetic fields
Mathematical models
Modules
TBM
Toroidal field ripple
title Non-axisymmetric magnetic field due to ferromagnetic inserts and helium cooled solid breeder test blanket modules in ITER
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