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首页> 外文期刊>Physics of plasmas >Effects of neoclassical toroidal viscosity induced by the intrinsic error fields and toroidal field ripple on the toroidal rotation in tokamaks
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Effects of neoclassical toroidal viscosity induced by the intrinsic error fields and toroidal field ripple on the toroidal rotation in tokamaks

机译:固有误差场和环形场脉动引起的新古典环形粘度对托卡马克环形旋转的影响

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Effects of neoclassical toroidal viscosity ( NTV) induced by intrinsic error fields and toroidal field ripple on cocurrent toroidal rotation in H-mode tokamak plasmas are investigated. It is expected that large NTV torque can be localized at the edge region through the 1/v-regime in the vicinity of E-r similar to 0 in the cocurrent rotating H-mode plasma. Numerical simulation on toroidal rotation demonstrates that the edge localized NTV torque determined by the intrinsic error fields and toroidal field ripples in the level of most tokamaks can damp the toroidal rotation velocity over the whole region while reducing the toroidal rotation pedestal which is clearly observed in Korea Superconducting Tokamak Advanced Research ( KSTAR) tokamak. It is found that the NTV torque changes the toroidal rotation gradient in the pedestal region dramatically, but the toroidal rotation profile in the core region responds rigidly without a change in the gradient. On the other hand, it shows that the NTV torque induced by the intrinsic error fields and toroidal field ripple in the level of the KSTAR tokamak, which are expected to be smaller than most tokamaks by at least one order of magnitude, is negligible in determining the toroidal rotation velocity profile. Experimental observation on the toroidal rotation change by the externally applied nonaxisymmetric magnetic fields on KSTAR also suggests that NTV torque arising from nonaxisymmetric magnetic fields can damp the toroidal rotation over the whole region while diminishing the toroidal rotation pedestal. Published by AIP Publishing.
机译:研究了固有误差场和环形场脉动引起的新古典环形粘度(NTV)对H型托卡马克等离子体中并流环形旋转的影响。期望大的NTV转矩可以通过1 / v区域在E-r附近通过1 / v区域局部化,类似于在并流旋转的H模式等离子体中的0。环形旋转的数值模拟表明,由固有误差场和大多数托卡马克水平中的环形场脉动确定的边缘局部NTV转矩可以阻尼整个区域的环形旋转速度,同时减小了环形旋转基座,这在韩国很明显超导托卡马克高级研究(KSTAR)托卡马克。发现NTV转矩极大地改变了基座区域中的环形旋转梯度,但是核心区域中的环形旋转轮廓刚性地响应而不改变梯度。另一方面,它表明,由KSTAR托卡马克水平的固有误差场和环形场脉动引起的NTV转矩在确定以下方面可忽略不计,该误差比大多数托卡马克要小至少一个数量级。环形旋转速度曲线。通过在KSTAR上外部施加非轴对称磁场对环形旋转变化进行的实验观察也表明,由非轴对称磁场产生的NTV转矩可以在整个区域阻尼环形旋转,同时减小环形旋转基座。由AIP Publishing发布。

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