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Experimental study of the structure of the plasma-current sheath on the PF-1000 facility

V Krauz, K Mitrofanov, M Scholz, M Paduch, L Karpinski, E Zielinska, P Kubes2012年Plasma Physics and Controlled FusionIF 2.2出版社

The results of studies of the plasma-current sheath structure on the PF-1000 facility in the stage close to the instant of pinch formation are presented. The measurements were performed using various modifications of the calibrated magnetic probes. Studies of the influence of the probe shape and dimensions on the measurements accuracy were done. The current flowing in the converging sheath at a distance of 40 mm from the axis of the facility electrodes was measured. In the optimal operating modes, this current is equal to the total discharge current, which indicates the high efficiency of current transportation toward the axis. In such shots a compact high-quality sheath forms with shock wave in front of the magnetic piston. It is shown that the neutron yield depends on the current compressed onto the axis. This dependence agrees well with the known scaling, Yn ∼ I4. The use of the total discharge current in constructing the current scaling, especially for facilities with a large stored energy, is unjustified.

日本語訳

PF-1000装置におけるピンチ形成の瞬間に近い段階でのプラズマ電流シース構造の研究結果を提示する。測定は、較正された磁気プローブの様々な改良型を用いて実施された。プローブの形状と寸法が測定精度に及ぼす影響についての研究が行われた。収束するシース内を流れる電流は、装置電極の軸から40mmの距離で測定された。最適な動作モードでは、この電流は全放電電流に等しく、これは軸方向への電流輸送の高効率を示している。このようなショットでは、磁気ピストンの前方に衝撃波を伴う、コンパクトで高品質なシースが形成される。中性子収量は軸上に圧縮された電流に依存することが示された。この依存性は既知のスケーリング、Yn ∼ I4 とよく一致する。大規模な蓄積エネルギーを持つ装置、特に大エネルギー貯蔵施設において、電流スケーリングを構築する際に全放電電流を用いることは正当化されない。

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