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Role of ion diamagnetic effects in the generation of large scale flows in toroidal ion temperature gradient mode turbulence

机译:离子反磁效应在环形离子温度梯度模式湍流中在大规模流产生中的作用

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摘要

The secondary instability of large scale flows, such as zonal flows and streamers, in toroidal ion temperature gradient turbulence is investigated. It is shown that diamagnetic effects (finite pressure fluctuations), such as those for toroidal ion temperature gradient modes, significantly increase the total Reynolds force. In general, pressure fluctuations have a finite phase shift relative to the electrostatic potential. It is shown that both parts (in-phase and out-of-phase) contribute to the diamagnetic Reynolds stress tensor. Also, the out-of-phase component of the pressure fluctuations is responsible for anomalous energy flux. It is shown here, that a specific contribution of the out-of-phase component to the Reynolds stress tensor allows us to decouple zonal flow dynamics from slow evolution of the ion pressure profile. General equations for the zonal flow and streamer instabilities in toroidal ion temperature gradient turbulence are derived and the growth rates are determined. (C) 2000 American Institute of Physics. [S1070- 664X(00)02210-2]. [References: 41]
机译:研究了环形离子温度梯度湍流中大流量(如纬向流和流光)的次要不稳定性。结果表明,反磁效应(有限的压力波动),例如环形离子温度梯度模式的反磁效应,会显着增加总的雷诺力。通常,压力波动相对于静电势具有有限的相移。结果表明,两个部分(同相和异相)都对反磁雷诺应力张量有贡献。同样,压力波动的异相分量也造成了异常的能量通量。此处显示,异相分量对雷诺应力张量的特定贡献使我们能够将区域流动力学与离子压力曲线的缓慢演化解耦。推导了环形离子温度梯度湍流中区域流和流缆不稳定性的一般方程式,并确定了增长率。 (C)2000美国物理研究所。 [S1070-664X(00)02210-2]。 [参考:41]

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