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Use of a twisted 3D Cauchy condition surface to reconstruct the last closed magnetic surface in a non-axisymmetric fusion plasma

Masafumi Itagaki, Gaku Okubo, Masayuki Akazawa, Yutaka Matsumoto, Kiyomasa Watanabe, Ryosuke Seki, Yasuhiro Suzuki2012年Plasma Physics and Controlled FusionIF 2.2出版社

The three-dimensional (3D) Cauchy condition surface (CCS) method code, 'CCS3D', is now under development to reconstruct the 3D magnetic field profile outside a non-axisymmetric fusion plasma using only magnetic sensor signals. A new 'twisted CCS' is introduced, whose elliptic cross-section rotates with the variation in plasma geometry in the toroidal direction of a helical-type device. Independent of the toroidal angle, this CCS can be placed at a certain distance from the last closed magnetic surface (LCMS). With this new CCS, it is found through test calculations for the Large Helical Device that the numerical accuracy in the reconstructed field is improved. Furthermore, the magnetic field line tracing indicates the LCMS more precisely than with the use of the axisymmetric CCS. A new idea to determine the LCMS numerically is also proposed.

日本語訳

3次元コーシー条件面(CCS)法コード「CCS3D」は、磁気センサー信号のみを用いて非軸対称核融合プラズマ外部の3次元磁場分布を再構成するために現在開発中である。新しい「ねじれCCS」が導入されており、その楕円断面はヘリカル型装置のトロイダル方向におけるプラズマ形状の変化に伴って回転する。トロイダル角度に依存せず、このCCSは最終閉鎖磁気面(LCMS)から一定の距離に配置することができる。この新しいCCSを用いることで、大型ヘリカル装置に対する試験計算を通じて、再構成された磁場の数値精度が向上することが示された。さらに、磁力線追跡により、軸対称CCSを用いた場合よりもLCMSをより精密に特定できることが示された。LCMSを数値的に決定する新しい手法も提案されている。

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