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Natural poloidal asymmetry and neoclassical transport of impurities in tokamak plasmas

机译:托卡马克等离子体中的天然面聚物不对称和杂质的新古典传输

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摘要

The neoclassical transport of impurities is investigated for a plasma without toroidal rotation nor anisotropic ion temperature. It is shown that a natural poloidal asymmetry of the impurity density exists in this case, and that it can be described with a simple analytical model. The poloidal asymmetry tends naturally to cancel as the impurity profile evolves towards its steady state, so that the main effect of the poloidal asymmetry is to slow down the impurity flux compared to its predicted value without poloidal asymmetry. The contribution of the asymmetries of the electrostatic potential and of the main ion density can be included in the analytical derivation, thus forming a self-consistent description of the neoclassical impurity flux together with its poloidal distribution. Numerical simulations with a non linear fluid code confirm the analytical findings, showing that the neoclassical transport of impurities is strongly modified by its natural poloidal distribution.
机译:研究了杂质的新核状传输,用于血浆,没有环形旋转,也不是各向异性离子温度。 结果表明,在这种情况下存在杂质密度的天然单色不对称性,并且可以用简单的分析模型描述它。 由于杂质分布朝向其稳定状态的发展,因此单个不对称性倾向于抵消,使得具有与其预测值的杂质通量减缓杂质通量的杂质通量,而无需球形不对称,则抑制杂质通量。 静电电位和主离子密度的非对称性的贡献可以包括在分析衍生中,从而形成与其对子分布一起的新古典杂质通量的自我一致描述。 具有非线性流体代码的数值模拟证实了分析结果,表明杂质的新古典传输被其天然单色分布强烈改变。

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