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Driving mechanism of sol plasma flow and effects on the divertor performance in JT-60U

机译:JT-60U溶胶等离子体流的驱动机理及其对分流器性能的影响

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The measurements of the SOL flow and plasma profiles both at the high-field-side (HFS) and low-field-side (LFS), for the first time, identified the SOL flow pattern and its driving mechanism. 'Flow reversal' was found near the HFS and LFS separatrix of the main plasma for the ion (nabla B) drift direction towards the divertor. 'Flow reversal' at the main SOL was reproduced numerically using the UEDGE code with the plasma drifts included although Mach numbers in measurements were greater than those obtained numerically. Particle fluxes towards the HFS and LFS divertors produced by the parallel SOL flow and E{sub}r × B drift flow were evaluated from the measured profiles of Mach numbers, the density and the radial electric field. The drift flux in the private flux region was also evaluated, and it was found that its contribution to the HFS-enhanced asymmetry of the divertor particle flux was larger than the ion flux from the HFS SOL. The ion flux for the intense gas puff and divertor pump ('puff and pump') was investigated, and it was found that both the Mach number and density were enhanced, in particular, at the HFS. Ion flux at the HFS SOL can be enhanced so as to become larger than the drift flux in the private flux region.
机译:首次在高场侧(HFS)和低场侧(LFS)进行SOL流动和等离子体分布图的测量,首次确定了SOL流动模式及其驱动机理。在主等离子体的HFS和LFS分离线附近,离子(nabla B)向偏滤器的漂移方向上发现了“逆流”。尽管测量中的马赫数大于从数值上获得的马赫数,但使用UEDGE代码以数字方式复制了主要SOL处的“逆流”,并包括了等离子体漂移。由测量的马赫数,密度和径向电场的分布图评估了由平行SOL流和E {sub} r×B漂移流产生的朝向HFS和LFS偏滤器的粒子通量。还评估了专用通量区域中的漂移通量,发现其对分流器粒子通量的HFS增强不对称性的贡献大于来自HFS SOL的离子通量。研究了强力吹气和分流器泵(“吹气和泵”)的离子通量,发现马赫数和密度都得到了提高,特别是在HFS处。可以增强HFS SOL处的离子通量,使其变得大于专用通量区域中的漂移通量。

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