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Shear modulation experiments with ECCD on TCV

机译:用ECCD在TCV上进行剪切调制实验

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Anomalous electron transport is determined by turbulence, which in turn is affected by magnetic shear. A novel application of electron cyclotron current drive (ECCD), aiming at localized shear modulation, has been applied on the TCV tokamak for experiments on shear-dependent electron transport. Pairs of EC beams, absorbed at the same radius, with one oriented for co- and the other for counter-injection, are modulated out of phase in order to force a local modulation of current-density at constant input power. Off-axis deposition (ρ_(dep) = 0.24) is performed to avoid the central region, where the low heat flux would make transport analysis difficult. In addition some sawteeth control is achieved in this way. A significant impact on local shear is achieved with I_(ECCD) ≈ 0.1 I_(OH), even when the modulation period is much shorter than the current diffusion time across the whole plasma radius. The main result is that although source (heat and particle) terms are constant, both electron density and temperature are modulated during alternated ECCD. Once equilibrium effects are taken into account for appropriate mapping of Thomson scattering measurements onto flux coordinates, modulation of T_e and electron pressure, peaked on-axis, is confirmed at all radii internal to EC deposition. The best confinement occurs for co-injection, in which case a local decrease (≈55%) in the magnetic shear causes a decrease in the electron thermal diffusivity of a similar amount (≈65%).
机译:电子的异常传输是由湍流决定的,而湍流又受磁剪切的影响。针对局域剪切调制的电子回旋电流驱动器(ECCD)的新应用已应用于TCV托卡马克,用于依赖剪切的电子传输实验。对在相同半径处吸收的成对EC光束进行异相调制,以便在恒定输入功率下强制进行电流密度的局部调制。进行离轴沉积(ρ_(dep)= 0.24)以避免避开中心区域,在中心区域低热通量会使运输分析变得困难。另外,以此方式实现了一些锯齿控制。 I_(ECCD)≈0.1 I_(OH)对局部剪切产生重大影响,即使调制周期比整个等离子体半径上的当前扩散时间短得多。主要结果是,尽管源(热和粒子)项是恒定的,但在交替的ECCD中电子密度和温度均受到调制。一旦考虑了平衡效应,即可将汤姆森散射测量值适当地映射到通量坐标上,则可以确定EC沉积内部所有半径处的T_e和电子压力的调制(在轴上达到峰值)。共注入的最佳限制发生在这种情况下,在这种情况下,磁剪切力的局部降低(≈55%)会导致电子热扩散率的降低幅度相似(≈65%)。

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