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Modeling of impurity effect on drift instabilities in plasmas with many ion species

机译:具有多种离子种类的等离子体中杂质对漂移不稳定性的影响建模

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摘要

Drift microinstabilities, being the main cause of anomalous transport of charged particles and energy in fusion plasmas, can be strongly influenced by the presence of impurities. Normally a large amount of different ion species from diverse charge states and chemical elements is present. An approach, providing a possibility to take into account an arbitrary number of ion species in analysis of instabilities, is proposed and applied to study the impurity effect on unstable modes due to ion temperature gradient and trapped electrons described in a linear fluid approximation. The method is validated by comparing with the results from direct calculations in a one impurity ion case. The dependence of instability characteristics and anomalous transport coefficients on the absolute level and radial gradient of impurity density is investigated. Plasmas with several impurity ion species, including C+6, N +7, O+8, Ne+10, and Ar+18 whose density peaking factors are determined self-consistently from the impurity zero flux condition, are considered as an example of applications. © 2010 EURATOM.
机译:微小的不稳定性是聚变等离子体中带电粒子和能量异常输送的主要原因,杂质的存在会严重影响漂移。通常存在大量来自不同电荷态和化学元素的不同离子种类。提出了一种方法,该方法提供了在不稳定性分析中考虑任意数量的离子种类的可能性,并被用于研究由于离子温度梯度和线性流体近似描述的俘获电子而对不稳定模式产生的杂质影响。通过与一种杂质离子情况下直接计算的结果进行比较,验证了该方法的有效性。研究了不稳定性特征和异常输运系数对杂质密度的绝对水平和径向梯度的依赖性。具有多个杂质离子种类的等离子体,例如C + 6,N + 7,O + 8,Ne + 10和Ar + 18,其浓度峰值因子是根据杂质零通量条件自洽确定的,应用程序。 ©2010 EURATOM。

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