论文标题

Tokamak等离子体边缘的电子 - 温度梯度湍流的三维不均匀性

Three-Dimensional Inhomogeneity of Electron-Temperature-Gradient Turbulence in the Edge of Tokamak Plasmas

论文作者

Parisi, J. F., Parra, F. I., Roach, C. M., Hardman, M. R., Schekochihin, A. A., Abel, I. G., Aiba, N., Ball, J., Barnes, M., Chapman-Oplopoiou, B., Dickinson, D., Dorland, W., Giroud, C., Hatch, D. R., Hillesheim, J. C., Ruiz, J. Ruiz, Saarelma, S., St-Onge, D.

论文摘要

联合欧洲圆环边基座的非线性多尺度旋转模拟用于表明电子 - 温度梯度(ETG)湍流具有丰富的三维结构,根据局部磁场构型的变化很大。在正常的磁场的平面中,陡峭的基座电子温度梯度产生了各向异性湍流,径向(正常)波长比双向方向短得多。在平行方向上,湍流的位置和平行范围取决于磁漂移和有限 - 甲摩尔 - 拉迪乌斯(FLR)效应的变化。磁性漂移和FLR的地形具有垂直波长的依赖性,该依赖性允许在较长的二手尺度上的通量表面和底部附近的湍流强度最大值,但在较短的电子 - gyroradius二手尺度上将湍流限制在外部平面上。我们的模拟表明,长波长ETG湍流不会有效地传输热量,并且通过多尺度相互作用大大降低了总体ETG传输(在我们的情况下,$ \ sim $ 40 \%)。

Nonlinear multiscale gyrokinetic simulations of a Joint European Torus edge pedestal are used to show that electron-temperature-gradient (ETG) turbulence has a rich three-dimensional structure, varying strongly according to the local magnetic-field configuration. In the plane normal to the magnetic field, the steep pedestal electron temperature gradient gives rise to anisotropic turbulence with a radial (normal) wavelength much shorter than in the binormal direction. In the parallel direction, the location and parallel extent of the turbulence are determined by the variation in the magnetic drifts and finite-Larmor-radius (FLR) effects. The magnetic drift and FLR topographies have a perpendicular-wavelength dependence, which permits turbulence intensity maxima near the flux-surface top and bottom at longer binormal scales, but constrains turbulence to the outboard midplane at shorter electron-gyroradius binormal scales. Our simulations show that long-wavelength ETG turbulence does not transport heat efficiently, and significantly decreases overall ETG transport -- in our case by $\sim$40 \% -- through multiscale interactions.

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