首页> 外文会议>International conference on plasma physics and controlled nuclear fusion research >H-MODE AND VH-MODE CONFINEMENT IMPROVEMENT IN DIII-D: INVESTIGATIONS OF TURBULENCE, LOCAL TRANSPORT AND ACTIVE CONTROL OF THE SHEAR IN THE E × B FLOW
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H-MODE AND VH-MODE CONFINEMENT IMPROVEMENT IN DIII-D: INVESTIGATIONS OF TURBULENCE, LOCAL TRANSPORT AND ACTIVE CONTROL OF THE SHEAR IN THE E × B FLOW

机译:DIII-D中的H模式和VH模式限制改进:E×B流动中剪切局部调查,局部运输和剪切的主动控制

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The hypothesis of stabilization of turbulence by shear in the E × B drift speed successfully predicts the observed turbulence reduction and confinement improvement seen at the L to H transition. This same hypothesis is the best explanation to date for the further confinement improvement seen in the plasma core when the plasma goes from H-mode to VH-mode. Consequently, the most fundamental question for H-mode studies now is: How is the electric field E_r formed? The radial force balance equation relates E_r to the main ion pressure gradient ▽P_i, poloidal rotation v_(θi), and toroidal rotation v_(θi). In the plasma edge, direct measurements show that ▽P_i, and v_(θi) are the important terms at the L to H transition, with ▽P_i, being the dominant, negative term throughout most of the H-mode. Since E_r is observed to change before the change in ▽P_i, it is inferred that main ion rotation, probably v_(θi), changes first, triggering the transition. E_r is seen to change before the change in fluctuations, consistent with E×B shear causing the change in fluctuations and transport. In the plasma core, E_r is primarily related to v_(Φi). There is a clear temporal and spatial correlation between the change in E × B shear and the region of local confinement improvement when the plasma goes from H-mode to VH-mode. Direct manipulation of v_(Φi) and E × B shear using the drag produced by a non-axisymmetric magnetic perturbation has produced clear changes in local transport consistent with the E × B shear stabilization hypothesis. The implications of these results for theories of the L to H and H to VH transitions are discussed.
机译:通过在E×B漂移速度的剪切紊流的稳定化的假设成功地预测所观察到的湍流减少和约束改善在L到H转变看出。这同样假设是迄今最好的解释在等离子体芯看出,当血浆从H模式变为VH-模式的进一步约束改善。因此,现在对于H模式研究中最根本的问题是:电场E_R是如何形成的?径向力平衡方程涉及E_R到主离子压力梯度▽P_I,极向旋转V_(θ1)和环向旋转V_(θ1)。在等离子体边缘,直接测量显示▽P_I,和V_(θ1)是重要的术语在L到H转变,以▽P_I,是在大部分的H模式的主导,负术语。由于E_R在▽P_I改变之前观察到的变化,可以推断主离子旋转,大概V_(θ1),第一改变,触发的过渡。 E_R在波动变化,为E×B剪切引起的波动和运输的变化相一致之前看到变化。在等离子体芯,E_R主要与V_(φI)。有于E×B剪切的变化和局部约束改善的区域之间有明显的时间和空间相关性时,等离子体从H模式到VH-模式进入。 V_的直接操作(φI)和E×B剪切使用由非轴对称磁性扰动产生的阻力产生了在本地传输与E×B剪切稳定假设一致清晰的变化。这些结果为L到H和H至VH转换的理论的影响进行了讨论。

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