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首页> 外文期刊>Physics of plasmas >Shear flow effect on ion temperature gradient vortices in plasmas with sheared magnetic field
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Shear flow effect on ion temperature gradient vortices in plasmas with sheared magnetic field

机译:剪切流对剪切磁场中离子温度梯度旋涡的影响

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摘要

The effect of velocity shear on ion temperature gradient (ITG) driven vortices in a nonuniform plasma in a curved, sheared magnetic field is investigated. In absence of parallel ion dynamics, vortex solutions for the ITG mode are studied analytically. It is shown that under certain conditions the coupled equations for potential and pressure exhibit special tripolar vortex-like structures. For the general case, however, parallel ion dynamics is included and the equation describing the stationary ITG vortex has the structure of a nonlinear Poisson-type equation. Analytical as well as numerical solutions of this equation are presented for various possible cases. It is shown that, for a critical value of the velocity shear asymmetric dipolar vortices can arise which are strongly modified as a localized vortex chain at resonance. For strong velocity shear these structures are destroyed and ultimately lead to a dominating monopolar form. The effects of magnetic shear indicate it may destroy these structures. (C) 1999 American Institute of Physics. [S1070-664X(99)00108-1]. [References: 30]
机译:研究了速度剪切对弯曲剪切磁场中非均匀等离子体中离子温度梯度(ITG)驱动的涡流的影响。在没有平行离子动力学的情况下,对ITG模式的涡旋解进行了分析研究。结果表明,在一定条件下,势能和压力的耦合方程表现出特殊的三极涡状结构。但是,对于一般情况,包括平行离子动力学,描述平稳ITG涡旋的方程式具有非线性泊松型方程式的结构。针对各种可能的情况,给出了该方程的解析解和数值解。结果表明,对于速度的临界值,会出现不对称的偶极涡旋,这些涡旋在共振时被强烈地修改为局部涡旋链。对于强速度剪切,这些结构被破坏并最终导致主要的单极形式。电磁剪切的影响表明它可能破坏这些结构。 (C)1999美国物理研究所。 [S1070-664X(99)00108-1]。 [参考:30]

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