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Momentum balance and radial electric fields in axisymmetric and nonaxisymmetric toroidal plasmas

机译:轴对称和非轴对称环形等离子体的动量平衡和径向电场

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We have investigated the influence of symmetry properties of toroidal magnetic configurations on the mechanisms used for determining the radial electric field such as the momentum balance and the ambipolar particle transport. Both neoclassical and anomalous transport of particles, heat and momentum in axisymmetric and nonaxisymmetric toroidal systems are taken into account. Generally, in nonaxisymmetric systems, the radial electric field is determined by the neoclassical ambipolarity condition. For axisymmetric systems with up-down symmetry and quasisymmetric systems with stellarator symmetry, it is shown using a novel parity transformation that the particle fluxes are automatically ambipolar up to O(δ~2) and the determination of the radial electric field Es requires solving the O(δ~3) momentum balance equations, where δ denotes the ratio of the thermal gyroradius to the characteristic equilibrium scale length. In axisymmetric systems with large E × B flows on the order of the ion thermal velocity υT_i, the radial fluxes of particles, heat and toroidal momentum are dependent on E_s and its radial derivative while the time evolution of the Es profile is governed by the (O(δ~2) toroidal momentum balance equation. In nonaxisymmetric systems, E × B flows of O(υT_i) are not generally allowed even in the presence of quasisymmetry because the nonzero radial current is produced by the large flow term in the equilibrium force balance for which the Boozer and Hamada coordinates cannot be constructed.
机译:我们已经研究了环形磁配置的对称性对用于确定径向电场的机制(如动量平衡和双极性粒子传输)的影响。轴对称和非轴对称环形系统中的颗粒的新古典运动和异常运输,热量和动量都被考虑在内。通常,在非轴对称系统中,径向电场由新古典双极性条件确定。对于具有上下对称性的轴对称系统和具有恒星对称性的准对称系统,使用新颖的奇偶校验变换表明,粒子通量会自动双极性上升到O(δ〜2),并且确定径向电场Es需要求解O(δ〜3)动量平衡方程,其中δ表示热陀螺半径与特征平衡尺度长度的比率。在具有大E×B的轴对称系统中,离子流速度为υT_i,粒子的径向通量,热量和环形动量取决于E_s及其径向导数,而Es轮廓的时间演化由( O(δ〜2)环形动量平衡方程,在非轴对称系统中,即使存在准对称性,也通常不允许O(υT_i)的E×B流,因为在平衡力中大流量项会产生非零径向电流无法建立Boozer和Hamada坐标的天平。

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