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MHD stability of fully non-inductive discharges in Tore Supra

P. Maget, F. Imbeaux, G. Huysmans, F. Clairet, Ph. Moreau, J.-L. Segui, L. Vermare, M. Ottaviani, M. Goniche2005年被引用 16Nuclear FusionIF 3出版社

Fully non-inductive discharges with lower hybrid (LH) current drive have been run successfully in Tore Supra, allowing for stationary plasma conditions for more than 6 min. The operational domain has been explored in terms of total plasma current (Ip), magnetic field (Bvac), and parallel refractive index (⟨n∥⟩), which characterize the deposition profile of LH waves. MHD activity has been encountered in a number of cases, either at a low saturated level, or at a high level in the so-called MHD regime (Maget P. et al2004 Nucl. Fusion44 443). This work first addresses the linear MHD stability properties of the operational space (Bvac, Ip, ⟨n∥⟩). Although most regions are found to be linearly unstable, the condition for triggering the deleterious MHD regime is more restrictive, and is shown to result from the full reconnection of the double-tearing mode. A simple criterion based on the helical flux ψ*, namely ψ* = 0 at the outer resonant surface, is used for the identification of the region where the MHD regime is triggered.

日本語訳

低域混成波(LH)電流駆動による完全非誘導放電がTore Supraにおいて成功裏に実施され、定常プラズマ状態が6分以上にわたり維持された。運転領域は、LH波の堆積プロファイルを特徴づける全プラズマ電流(Ip)、磁場(Bvac)、および平行屈折率(⟨n∥⟩)の観点から探索された。MHD活動は多くの場合に観測され、低い飽和レベルか、あるいはいわゆるMHD領域(Maget P.ら、2004年、Nucl. Fusion 44、443)における高いレベルのいずれかで発生した。本論文ではまず、運転空間(Bvac、Ip、⟨n∥⟩)における線形MHD安定性特性を扱う。ほとんどの領域は線形的に不安定であることが判明したが、有害なMHD領域を誘発する条件はより制限的であり、二重テアリングモードの完全なリコネクションに起因することが示された。MHD領域が誘発される領域の同定には、ヘリカル磁束ψ*に基づく簡潔な基準、すなわち外側共鳴面におけるψ* = 0が用いられる。

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MagnetohydrodynamicsTore SupraMHD stability
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