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The radial electric field and its associated shear in the ASDEX Upgrade tokamak

机译:ASDEX升级托卡马克中的径向电场及其相关的剪切

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摘要

The radial electric field (E-r) and its shear (partial derivative E-r/partial derivative r) are believed to be fundamental for turbulence suppression in magnetically confined plasmas. Doppler reflectometry offers a direct method of obtaining E-r and partial derivative E-r/partial derivative r measurements. It is a type of microwave radar technique which uses the back-scatter of microwaves from a radial position in the plasma where the refractive index equals zero. In this paper, the use of Doppler reflectometry for E-r measurements is investigated. The technique is extended for partial derivative E-r/partial derivative r measurements by simultaneously probing the plasma with two microwave beams at different frequencies. E-r and partial derivative E-r/partial derivative r measurements are presented for a wide variety of plasma conditions. The measurements show that E-r and its associated shear are linked to plasma confinement. Their absolute values increase with confinement at the plasma edge. Furthermore, the measurements show dependence on the applied plasma auxiliary heating and the plasma shape. The E-r shear results suggest that negative shear is more influential than positive shear, in contradiction to several theoretical models.
机译:径向电场(E-r)及其切变(偏导数E-r /偏导数r)被认为是抑制电磁约束等离子体中湍流的基础。多普勒反射仪提供了获得E-r和偏导数E-r /偏导数r测量值的直接方法。这是一种微波雷达技术,它使用微波从等离子中径向位置(折射率等于零)的反向散射。在本文中,研究了使用多普勒反射仪进行E-r测量。通过用两个不同频率的微波束同时探测等离子体,该技术扩展到了偏导数E-r /偏导数r测量。 E-r和偏导数E-r /偏导数r的测量结果适用于多种等离子体条件。测量结果表明,E-r及其相关的剪切与等离子体限制有关。它们的绝对值随等离子体边缘的限制而增加。此外,测量结果显示出取决于所施加的等离子体辅助加热和等离子体形状。 E-r剪切结果表明,负剪切力比正剪切力更具影响力,这与几种理论模型相矛盾。

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