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Impurity transport during pulsed poloidal current drive experiment in the reversed field pinch experiment RFX

机译:反向电场收缩实验RFX中脉冲极化电流驱动实验中的杂质传输

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The characteristics of the impurity transport in the RFX reversed field pinch experiment during enhanced confinement regimes, such as those obtained performing pulsed poloidal current drive and oscillating poloidal current drive, have been investigated. It is found that during the enhanced confinement period, the ratio between the Ly alpha line of C VI and the resonance line of C V increases systematically well beyond the expected enhancement due to the temperature improvement. Experimental data have been reproduced by means of a one-dimensional, time dependent, collisional-radiative impurity transport code, which simulates several C and O lines, continuum emission and radiated power. In standard RFX plasmas the typical diffusion coefficient is similar to20 m(2) s(-1) at the plasma centre decreasing to similar to1 m(2) s(-1) at the edge. Best simulations of the spectroscopic data during the enhancement confinement phases are obtained by expanding the low diffusion region at the edge from r/a = 0.9 to r/a = 0.8 +/- 0.05 and shrinking the neutral density profile at the edge. [References: 42]
机译:在RFX反向场收缩实验中,在增强约束机制下,例如进行脉冲极化电流驱动和振荡极化电流驱动的过程中,研究了杂质传输的特性。可以发现,在增强的约束期间,由于温度的提高,C VI的Ly alpha线与C V的共振线之间的比率系统地增加,远远超出了预期的增强。实验数据已经通过一维的,与时间有关的,碰撞辐射的杂质传输代码进行了复制,该代码模拟了多条C和O线,连续发射和辐射功率。在标准RFX等离子体中,典型的扩散系数在等离子中心处类似于20 m(2)s(-1),而在边缘处则类似于1 m(2)s(-1)。通过将边缘处的低扩散区域从r / a = 0.9扩展到r / a = 0.8 +/- 0.05并缩小边缘处的中性密度分布,可以获得增强限制阶段光谱数据的最佳模拟。 [参考:42]

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