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Regulation of electron temperature gradient turbulence by zonal flows driven by trapped electron modes

机译:由俘获电子模式驱动的纬向流对电子温度梯度湍流的调节

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摘要

Turbulent transport caused by electron temperature gradient (ETG) modes was investigated by means of gyrokinetic simulations. It was found that the ETG turbulence can be regulated by meso-scale zonal flows driven by trapped electron modes (TEMs), which are excited with much smaller growth rates than those of ETG modes. The zonal flows of which radial wavelengths are in between the ion and the electron banana widths are not shielded by trapped ions nor electrons, and hence they are effectively driven by the TEMs. It was also shown that an E×B shearing rate of the TEM-driven zonal flows is larger than or comparable to the growth rates of long-wavelength ETG modes and TEMs, which make a main contribution to the turbulent transport before excitation of the zonal flows.
机译:通过陀螺动力学模拟研究了由电子温度梯度(ETG)模式引起的湍流传输。已经发现,ETG湍流可以由俘获电子模式(TEM)驱动的中尺度纬向流调节,该俘获电子模式的激发速率比ETG模式小得多。径向波长在离子和电子香蕉宽度之间的纬向流不会被捕获的离子或电子屏蔽,因此它们会受到TEM的有效驱动。还表明,TEM驱动的纬向流的E×B剪切速率大于或可与长波长ETG模式和TEM的生长速率相媲美,这对纬向激发之前湍流的传输起了主要作用。流。

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