A study of the vacuum magnetic field produced by the Poloidal Field (PF) coil system of ASDEX Upgrade is presented. In the model both coils and their power-supply feedthroughsare considered. The latter contribute to the error fields (EFs) that have already been observed and reported in [1, 2]. The effect on the Bfield due to PF coils, assumed to be perfectly axisym-metric, is addressed by analytical formulas, while a 1-D model is applied to feedthroughs [3].Figure 1:Bn(values in T) onq=2 sur-face, before (above) and after (below)correction.Figure 2: Virtual shell (blue) and activesaddle coils (yellow).The model is applied to a reference shot (#35352) for the computation of the normal component ofB(i.e.Bn) projected on theq=2 rational surface. The resulting EF patternis located near the feedthroughs region, with a maximumvalue close to 0.25 mT. ASDEX Upgrade is equipped with aset of 16 in-vessel saddle coils [4], that can be used to minimize the effect of EFs on plasma discharges. A preliminary correction strategy of the non-axisymmetric field generated by feedthroughs is based on a Virtual Shell Approach, that is made up by 8 upper and 8 lower saddle loops built ontheq=2 surface. The matrixM16×16of the mutual inductances between active coils and virtual shell is computed nu-merically, such thatI=M-1???, where???is the vector of the fluxes linked by the virtual shell loops and Istores the unknown currents needed for compensating those fluxes. A more detailed analysis is foreseen to include further possible sources of EFs(e.g. passive conductive structures, ferromagnetic tiles, tilting of PF coils). Moreover, MARS-F[5] can be used for calculations of plasma response to a prescribedm, nharmonic of the EFdistribution, and a new correction strategy may be applied for reducing the resulting EF pattern.

Vacuum Estimation of Error Field Correction on ASDEX Upgrade

Marrelli L;
2019

Abstract

A study of the vacuum magnetic field produced by the Poloidal Field (PF) coil system of ASDEX Upgrade is presented. In the model both coils and their power-supply feedthroughsare considered. The latter contribute to the error fields (EFs) that have already been observed and reported in [1, 2]. The effect on the Bfield due to PF coils, assumed to be perfectly axisym-metric, is addressed by analytical formulas, while a 1-D model is applied to feedthroughs [3].Figure 1:Bn(values in T) onq=2 sur-face, before (above) and after (below)correction.Figure 2: Virtual shell (blue) and activesaddle coils (yellow).The model is applied to a reference shot (#35352) for the computation of the normal component ofB(i.e.Bn) projected on theq=2 rational surface. The resulting EF patternis located near the feedthroughs region, with a maximumvalue close to 0.25 mT. ASDEX Upgrade is equipped with aset of 16 in-vessel saddle coils [4], that can be used to minimize the effect of EFs on plasma discharges. A preliminary correction strategy of the non-axisymmetric field generated by feedthroughs is based on a Virtual Shell Approach, that is made up by 8 upper and 8 lower saddle loops built ontheq=2 surface. The matrixM16×16of the mutual inductances between active coils and virtual shell is computed nu-merically, such thatI=M-1???, where???is the vector of the fluxes linked by the virtual shell loops and Istores the unknown currents needed for compensating those fluxes. A more detailed analysis is foreseen to include further possible sources of EFs(e.g. passive conductive structures, ferromagnetic tiles, tilting of PF coils). Moreover, MARS-F[5] can be used for calculations of plasma response to a prescribedm, nharmonic of the EFdistribution, and a new correction strategy may be applied for reducing the resulting EF pattern.
2019
Istituto per la Scienza e Tecnologia dei Plasmi - ISTP
Inglese
46th EPS Conference on Plasma Physics 8 - 12 July 2019
46th European Physical Society Conference on Plasma Physics (EPS 2019)
1
4
4
http://ocs.ciemat.es/EPS2019PAP/pdf/P4.1099.pdf
European Physical Society (EPS)
Mulhouse
FRANCIA
8-12 July 2019
Milan, Italy
ASDEX
Poloidal Field
ID P4.1099 / Abstract link: http://ocs.ciemat.es/EPS2019ABS/pdf/P4.1099.pdf
10
none
Voltolina, D; Bettini, P; Igochine, V; Marrelli, L; Mcdermott, R; Pigatto, L; Piron, L; Zammuto, I; the ASDEX Upgrade, Team; the EUROfusion MST, Team...espandi
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
   Implementation of activities described in the Roadmap to Fusion during Horizon 2020 through a Joint programme of the members of the EUROfusion consortium
   EUROfusion
   H2020
   633053
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/361286
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