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Reduction of Turbulent Transport with Zonal Flows Enhanced in Helical Systems

机译:螺旋系统中增强的带状流减少了湍流传输

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摘要

Gyrokinetic Vlasov simulations of the ion temperature gradient turbulence are performed in order to investigate effects of helical magnetic configurations on turbulent transport and zonal flows. The obtained results confirm the theoretical prediction that helical configurations optimized for reducing neoclassical ripple transport can simultaneously reduce the turbulent transport with enhancing zonal-flow generation. Stationary zonal-flow structures accompanied with transport reduction are clearly identified by the simulation for the neoclassically optimized helical geometry. The generation of the stationary zonal flow explains a physical mechanism for causing the confinement improvement observed in the inward-shifted plasma in the Large Helical Device [O. Motojima et al., Nucl. Fusion 43, 1674 (2003)].
机译:进行离子温度梯度湍流的陀螺动力学Vlasov模拟,以研究螺旋磁配置对湍流输运和区域流的影响。获得的结果证实了理论上的预测,即为减少新古典波纹传递而优化的螺旋构型可以同时减少湍流传递,同时增强了纬向流的产生。通过对新古典优化的螺旋几何结构的仿真,可以清楚地识别出伴随着运输减少的平稳地带流结构。固定的纬向流的产生解释了一种物理机制,该机制导致了大型螺旋装置[O. Motojima等,Nucl.Chem.Soc。融合43,1674(2003)]。

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