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Theoretical model of the plasma edge. II. Transport along the open field lines of a magnetic island belt associated with the ionization instability

A.L.M. Rogister, G. Hasselberg1993年被引用 10Nuclear FusionIF 3出版社

For pt.I, see ibid, p.1799-1816 (1993). To the ionization instability described in Part I correspond odd ϕ, even br eigenfunctions leading, as for the tearing mode, to a magnetic island belt centred about the rational magnetic surface q = m < qa (q is the safety factor; m is the mode number). Plasma dumping on the target plates, along the island magnetic field lines, releases the neutrals, the ionization of which drives the instability. This self-consistent model of the plasma edge yields the electron temperature on the last closed equilibrium magnetic surface and the particle confinement time, which are compared with the values measured in TEXTOR and other tokamaks; interestingly, the value obtained for τp is very reminiscent of the heuristic energy confinement time expression proposed by Kaye and Goldston(1985). Theory also predicts an equilibrium bifurcation at high power, corresponding to a reduction, and then a collapse, of the island width. The hypothesis that the (L mode) island belt be hooked up to the machine's structure is briefly discussed

日本語訳

ptについては、同書、pp.1799-1816 (1993)を参照のこと。第I部で述べた電離不安定性には、奇数ϕ、偶数brの固有関数が対応し、これはテアリングモードの場合と同様に、有理磁気面 q = m < qa (qは安全係数、mはモード数) を中心とする磁気島ベルトを導く。ターゲットプレートへのプラズマのダンプは、島の磁力線に沿って中性粒子を放出し、その電離が不安定性を駆動する。このプラズマ端部の自己無撞着モデルは、最後の閉じた平衡磁気面上の電子温度と粒子閉じ込め時間を与え、これらはTEXTORおよび他のトカマクで測定された値と比較される。興味深いことに、τpに対して得られた値は、Kaye and Goldston (1985)によって提案されたヒューリスティックなエネルギー閉じ込め時間の式を非常に彷彿とさせる。理論はまた、高パワーにおける平衡の分岐を予測し、これは島幅の減少、続いて崩壊に対応する。(Lモード)島ベルトが装置の構造に連結されているという仮説について簡単に議論される。

装置

textor中精度(概要文一致)

wiki

Magnetic islands
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