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Exploring phase space turbulence in magnetic fusion plasmas

机译:探索磁融合等离子体中的相空间湍流

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Plasma turbulence accompanied with fluctuations of the distribution function and the electromagnetic fields develops on the phase space composed of the configuration space and the velocity space. Detailed structures of the distribution function in magnetic fusion plasmas are investigated by means of gyrokinetic simulations performed on massively parallel supercomputers. The gyrokinetic simulations of drift wave turbulence have demonstrated entropy transfer in the phase space, zonal flow enhancement by helical fields and the resultant transport reduction. The state-of-the-art high performance computing is utilized for a multiscale turbulence simulation covering ion- and electron-scales and for a global-scale simulation of turbulent transport in a sub-ITER sized plasma.
机译:等离子体湍流伴随着分配功能的波动,电磁场在由配置空间和速度空间组成的相空间上发育。通过对大规模平行的超级计算机进行的旋转模拟来研究磁融合等离子体的分布函数的详细结构。漂移波湍流的热因子模拟已经在相空间,螺旋田的区域空间,带状流量增强和所得的传输减少的熵转移。最先进的高性能计算用于多尺度湍流仿真覆盖离子和电子秤以及用于次射线尺寸等离子体中的湍流传输的全球级刻度模拟。

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