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首页> 外文期刊>Plasma physics and controlled fusion >Investigation of ITG turbulence in cylinder geometry within a gyrokinetic global PIC simulation: influence of zonal flows and a magnetic well
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Investigation of ITG turbulence in cylinder geometry within a gyrokinetic global PIC simulation: influence of zonal flows and a magnetic well

机译:在陀螺动力学全局PIC模拟中研究圆柱几何中的ITG湍流:地带流和磁阱的影响

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摘要

A gyrokinetic global nonlinear particle-in-cell (PIC) method is applied to calculate ion-temperature-gradient (ITG) driven turbulence and the resulting anomalous heat transport in a theta-pinch. The level of turbulence and transport are strongly decreased by poloidal zonal E x B flows. The radial electric field, E-r, leading to these zonal flows is generated by the turbulence. Thus, a magnetic field with a well according to a finite-beta equilibrium and leading to a decrease in the linear growth rates of ITG-modes influences the formation of the radial electric field. The gyrokinetic global nonlinear TORB code has been modified to investigate the consequences for the turbulence level.
机译:应用了一种动态的整体非线性单元中粒子(PIC)方法来计算离子温度梯度(ITG)驱动的湍流以及由此产生的异常热传递。倍数带状E x B流动极大地降低了湍流和运输的水平。导致这些区域流的径向电场E-r是由湍流产生的。因此,具有符合有限β平衡的阱并导致ITG模式的线性增长率降低的磁场会影响径向电场的形成。修改了动力学动态全局非线性TORB代码,以研究湍流水平的后果。

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