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Modelling of PPCD in the reversed field pinch RFX by the transport code RITM

机译:通过传输代码RITM在反向场收缩RFX中对PPCD进行建模

摘要

The modifications in plasma parameters and heating power under conditions of pulsed poloidal current drive (PPCD) in Reversed Field eXperiment (RFX) are modelled by the one-dimensional transport code RITM (Radiation from Impurities in Transport Model). Several channels for the PPCD effects on plasma confinement are taken into account: dissipation of externally driven poloidal currents, reduction in the electric field induced by the dynamo and decrease in magnetic fluctuations. It is demonstrated that the external currents are dissipated at the plasma edge and they cannot, alone, lead to any change in the temperature profile. The reduction in the dynamo electric field results in central peaking of the current and Ohmic power densities, accompanied, however, by a very modest rise in the central temperature. By taking into account the decrease in the level of magnetic fluctuations (predicted for PPCD conditions by non-linear MHD simulations) and the corresponding reduction of transport in the stochastic magnetic field, RITM reproduces, in agreement with experiments, a significant increase in the central temperature and a reduction in the loop voltage.
机译:在反向电场实验(RFX)中,在脉冲极化电流驱动(PPCD)的条件下,对等离子体参数和加热功率的修改通过一维传输代码RITM(传输模型中的杂质辐射)进行建模。考虑了PPCD对等离子体限制的几个通道:外部驱动的极向电流的耗散,发电机感应的电场的减小和磁波动的减小。已经证明,外部电流在等离子体边缘消散,并且它们不能单独导致温度曲线的任何变化。发电机电场的减小导致电流和欧姆功率密度的中心峰值,但是伴随着中心温度的非常适度的上升。通过考虑磁波动水平的降低(通过非线性MHD模拟针对PPCD条件进行预测)以及随机磁场中相应的传输减少,RITM与实验相一致地再现了中心的显着增加。温度和环路电压的降低。

著录项

  • 作者

    Telesca V. M.; Tokar A. D.;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-31 15:54:57

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